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cadSet/cad-experience-plugin/benchmarks/ab50/train-experience-draft.json
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{
"schema_version": "2.0",
"draft_kind": "llm_generalized_experience_proposals",
"review_intent": "Transfer semantic construction methods, constraints, and dimensionless family priors without source geometry.",
"proposals": [
{
"id": "motif.flanged_rotational_part.repeated_axial_hole_pattern_and_circular_equal_radius_pattern",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Organize repeated axial holes as one circular pattern referenced to a semantic pattern center.",
"semantic_rationale": "Pattern-level representation keeps count, radius role, and radial placement coherent across dimensional variants."
},
{
"id": "motif.flanged_rotational_part.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.flanged_rotational_part.rotational_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"rotational_body",
"stepped_rotational_profile"
]
},
"guidance": "Represent a rotational body as an ordered semantic profile of coaxial sections.",
"semantic_rationale": "A profile-level representation preserves shaft and hub topology when section proportions change."
},
{
"id": "motif.flanged_rotational_part.rotational_body_and_flange_like_rotational_body",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"flange_like_rotational_body"
],
"required_relations": [],
"context_features": [
"rotational_body",
"flange_like_rotational_body"
]
},
"guidance": "Separate the flange-like region from the remaining rotational profile while retaining their shared axis.",
"semantic_rationale": "Role separation permits flange and hub edits without losing rotational continuity."
},
{
"id": "motif.flanged_rotational_part.shaft_like_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"shaft_like_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"shaft_like_body",
"stepped_rotational_profile"
]
},
"guidance": "Model a shaft-like body through named axial sections and shoulders.",
"semantic_rationale": "Named sections make length and diameter edits local while preserving the overall shaft topology."
},
{
"id": "motif.flanged_rotational_part.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.flanged_rotational_part.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "motif.flanged_rotational_part.rotational_body_and_toroidal_blend_or_groove",
"kind": "feature_motif",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"toroidal_blend_or_groove"
],
"required_relations": [],
"context_features": [
"rotational_body",
"toroidal_blend_or_groove"
]
},
"guidance": "Attach toroidal blend or groove candidates to the surrounding rotational profile rather than treating them as free geometry.",
"semantic_rationale": "Referencing the host profile preserves the local transition role when the host diameter changes."
},
{
"id": "constraint.flanged_rotational_part.repeated_radius_group",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern"
],
"required_relations": [
"repeated_radius_group"
],
"context_features": [
"repeated_axial_hole_pattern"
]
},
"guidance": "Preserve a shared radius role across members of a repeated axial feature group.",
"semantic_rationale": "The invariant applies across sizes because it constrains equality of roles rather than an absolute radius.",
"check": "Confirm that the repeated radius group relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.common_pattern_radius",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [
"common_pattern_radius"
],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Preserve a common radial placement role for members of a circular repeated-feature pattern.",
"semantic_rationale": "A shared pattern radius keeps the array coherent while permitting overall scaling.",
"check": "Confirm that the common pattern radius relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.shared_passage_axis",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.multiple_axis_system",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.transition_axis_continuity",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.coaxial_stack",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"coaxial_stack"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Preserve coaxiality across the named sections of a rotational stack.",
"semantic_rationale": "Coaxial constraints maintain rotational function across dimensional variants.",
"check": "Confirm that the coaxial stack relationship remains valid after creation or modification."
},
{
"id": "constraint.flanged_rotational_part.dominant_axis_alignment",
"kind": "constraint",
"scope": [
"flanged_rotational_part"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"dominant_axis_alignment"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Reference rotational sections and dependent features to one dominant semantic axis.",
"semantic_rationale": "A dominant datum axis stabilizes both creation and later parameter edits.",
"check": "Confirm that the dominant axis alignment relationship remains valid after creation or modification."
},
{
"id": "distribution.flanged_rotational_part.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.flanged_rotational_part.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"flanged_rotational_part"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "constraint.general_mechanical_part.transition_axis_continuity",
"kind": "constraint",
"scope": [
"general_mechanical_part"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "distribution.general_mechanical_part.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.general_mechanical_part.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.general_mechanical_part.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.general_mechanical_part.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.general_mechanical_part.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.general_mechanical_part.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"general_mechanical_part"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.hollow_or_stepped_shaft.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.hollow_or_stepped_shaft.rotational_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"rotational_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"rotational_body",
"stepped_rotational_profile"
]
},
"guidance": "Represent a rotational body as an ordered semantic profile of coaxial sections.",
"semantic_rationale": "A profile-level representation preserves shaft and hub topology when section proportions change."
},
{
"id": "motif.hollow_or_stepped_shaft.shaft_like_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"shaft_like_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"shaft_like_body",
"stepped_rotational_profile"
]
},
"guidance": "Model a shaft-like body through named axial sections and shoulders.",
"semantic_rationale": "Named sections make length and diameter edits local while preserving the overall shaft topology."
},
{
"id": "motif.hollow_or_stepped_shaft.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.hollow_or_stepped_shaft.rotational_body_and_toroidal_blend_or_groove",
"kind": "feature_motif",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"rotational_body",
"toroidal_blend_or_groove"
],
"required_relations": [],
"context_features": [
"rotational_body",
"toroidal_blend_or_groove"
]
},
"guidance": "Attach toroidal blend or groove candidates to the surrounding rotational profile rather than treating them as free geometry.",
"semantic_rationale": "Referencing the host profile preserves the local transition role when the host diameter changes."
},
{
"id": "constraint.hollow_or_stepped_shaft.shared_passage_axis",
"kind": "constraint",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.hollow_or_stepped_shaft.multiple_axis_system",
"kind": "constraint",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.hollow_or_stepped_shaft.transition_axis_continuity",
"kind": "constraint",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "constraint.hollow_or_stepped_shaft.coaxial_stack",
"kind": "constraint",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"coaxial_stack"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Preserve coaxiality across the named sections of a rotational stack.",
"semantic_rationale": "Coaxial constraints maintain rotational function across dimensional variants.",
"check": "Confirm that the coaxial stack relationship remains valid after creation or modification."
},
{
"id": "constraint.hollow_or_stepped_shaft.dominant_axis_alignment",
"kind": "constraint",
"scope": [
"hollow_or_stepped_shaft"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"dominant_axis_alignment"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Reference rotational sections and dependent features to one dominant semantic axis.",
"semantic_rationale": "A dominant datum axis stabilizes both creation and later parameter edits.",
"check": "Confirm that the dominant axis alignment relationship remains valid after creation or modification."
},
{
"id": "distribution.hollow_or_stepped_shaft.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.hollow_or_stepped_shaft.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.hollow_or_stepped_shaft.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.hollow_or_stepped_shaft.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.hollow_or_stepped_shaft.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.hollow_or_stepped_shaft.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"hollow_or_stepped_shaft"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.multi_axis_manifold.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.multi_axis_manifold.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.multi_axis_manifold.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "constraint.multi_axis_manifold.shared_passage_axis",
"kind": "constraint",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.multi_axis_manifold.multiple_axis_system",
"kind": "constraint",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.multi_axis_manifold.transition_axis_continuity",
"kind": "constraint",
"scope": [
"multi_axis_manifold"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "distribution.multi_axis_manifold.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.multi_axis_manifold.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.multi_axis_manifold.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.multi_axis_manifold.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.multi_axis_manifold.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.multi_axis_manifold.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"multi_axis_manifold"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.patterned_plate.repeated_axial_hole_pattern_and_circular_equal_radius_pattern",
"kind": "feature_motif",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Organize repeated axial holes as one circular pattern referenced to a semantic pattern center.",
"semantic_rationale": "Pattern-level representation keeps count, radius role, and radial placement coherent across dimensional variants."
},
{
"id": "motif.patterned_plate.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.patterned_plate.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.patterned_plate.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "constraint.patterned_plate.repeated_radius_group",
"kind": "constraint",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern"
],
"required_relations": [
"repeated_radius_group"
],
"context_features": [
"repeated_axial_hole_pattern"
]
},
"guidance": "Preserve a shared radius role across members of a repeated axial feature group.",
"semantic_rationale": "The invariant applies across sizes because it constrains equality of roles rather than an absolute radius.",
"check": "Confirm that the repeated radius group relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_plate.common_pattern_radius",
"kind": "constraint",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [
"common_pattern_radius"
],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Preserve a common radial placement role for members of a circular repeated-feature pattern.",
"semantic_rationale": "A shared pattern radius keeps the array coherent while permitting overall scaling.",
"check": "Confirm that the common pattern radius relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_plate.shared_passage_axis",
"kind": "constraint",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_plate.multiple_axis_system",
"kind": "constraint",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_plate.transition_axis_continuity",
"kind": "constraint",
"scope": [
"patterned_plate"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "distribution.patterned_plate.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_plate.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"patterned_plate"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.patterned_prismatic_part.repeated_axial_hole_pattern_and_circular_equal_radius_pattern",
"kind": "feature_motif",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Organize repeated axial holes as one circular pattern referenced to a semantic pattern center.",
"semantic_rationale": "Pattern-level representation keeps count, radius role, and radial placement coherent across dimensional variants."
},
{
"id": "motif.patterned_prismatic_part.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.patterned_prismatic_part.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.patterned_prismatic_part.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "constraint.patterned_prismatic_part.repeated_radius_group",
"kind": "constraint",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern"
],
"required_relations": [
"repeated_radius_group"
],
"context_features": [
"repeated_axial_hole_pattern"
]
},
"guidance": "Preserve a shared radius role across members of a repeated axial feature group.",
"semantic_rationale": "The invariant applies across sizes because it constrains equality of roles rather than an absolute radius.",
"check": "Confirm that the repeated radius group relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_prismatic_part.common_pattern_radius",
"kind": "constraint",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
],
"required_relations": [
"common_pattern_radius"
],
"context_features": [
"repeated_axial_hole_pattern",
"circular_equal_radius_pattern"
]
},
"guidance": "Preserve a common radial placement role for members of a circular repeated-feature pattern.",
"semantic_rationale": "A shared pattern radius keeps the array coherent while permitting overall scaling.",
"check": "Confirm that the common pattern radius relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_prismatic_part.shared_passage_axis",
"kind": "constraint",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_prismatic_part.multiple_axis_system",
"kind": "constraint",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.patterned_prismatic_part.transition_axis_continuity",
"kind": "constraint",
"scope": [
"patterned_prismatic_part"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "distribution.patterned_prismatic_part.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.patterned_prismatic_part.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"patterned_prismatic_part"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.plate_or_bracket.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"plate_or_bracket"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "distribution.plate_or_bracket.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.plate_or_bracket.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.plate_or_bracket.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.plate_or_bracket.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.plate_or_bracket.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.plate_or_bracket.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"plate_or_bracket"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.prismatic_block.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"prismatic_block"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "constraint.prismatic_block.transition_axis_continuity",
"kind": "constraint",
"scope": [
"prismatic_block"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "distribution.prismatic_block.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.pattern_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "pattern_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.prismatic_block.repeated_feature_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"prismatic_block"
],
"observation_name": "repeated_feature_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.rotational_part.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.rotational_part.rotational_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"rotational_body",
"stepped_rotational_profile"
]
},
"guidance": "Represent a rotational body as an ordered semantic profile of coaxial sections.",
"semantic_rationale": "A profile-level representation preserves shaft and hub topology when section proportions change."
},
{
"id": "motif.rotational_part.rotational_body_and_flange_like_rotational_body",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"flange_like_rotational_body"
],
"required_relations": [],
"context_features": [
"rotational_body",
"flange_like_rotational_body"
]
},
"guidance": "Separate the flange-like region from the remaining rotational profile while retaining their shared axis.",
"semantic_rationale": "Role separation permits flange and hub edits without losing rotational continuity."
},
{
"id": "motif.rotational_part.cylindrical_feature_network_and_multi_axis_passage",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"multi_axis_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"multi_axis_passage"
]
},
"guidance": "Partition cylindrical passages by axis system before constructing or modifying their intersections.",
"semantic_rationale": "Axis-system partitioning reduces unintended coupling between independent passage families."
},
{
"id": "motif.rotational_part.multi_level_planar_profile_and_planar_dominant_body",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"multi_level_planar_profile",
"planar_dominant_body"
],
"required_relations": [],
"context_features": [
"multi_level_planar_profile",
"planar_dominant_body"
]
},
"guidance": "Treat major planar levels as named structural regions of the prismatic body.",
"semantic_rationale": "Named planar regions preserve plate, pocket, and shoulder relationships during edits."
},
{
"id": "motif.rotational_part.rotational_body_and_toroidal_blend_or_groove",
"kind": "feature_motif",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"rotational_body",
"toroidal_blend_or_groove"
],
"required_relations": [],
"context_features": [
"rotational_body",
"toroidal_blend_or_groove"
]
},
"guidance": "Attach toroidal blend or groove candidates to the surrounding rotational profile rather than treating them as free geometry.",
"semantic_rationale": "Referencing the host profile preserves the local transition role when the host diameter changes."
},
{
"id": "constraint.rotational_part.shared_passage_axis",
"kind": "constraint",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.rotational_part.multiple_axis_system",
"kind": "constraint",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"multi_axis_passage"
],
"required_relations": [
"multiple_axis_system"
],
"context_features": [
"multi_axis_passage"
]
},
"guidance": "Represent each passage direction as a distinct axis system and validate their intended intersections.",
"semantic_rationale": "Explicit axis systems preserve multi-direction passage intent during local edits.",
"check": "Confirm that the multiple axis system relationship remains valid after creation or modification."
},
{
"id": "constraint.rotational_part.transition_axis_continuity",
"kind": "constraint",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "constraint.rotational_part.coaxial_stack",
"kind": "constraint",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"coaxial_stack"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Preserve coaxiality across the named sections of a rotational stack.",
"semantic_rationale": "Coaxial constraints maintain rotational function across dimensional variants.",
"check": "Confirm that the coaxial stack relationship remains valid after creation or modification."
},
{
"id": "constraint.rotational_part.dominant_axis_alignment",
"kind": "constraint",
"scope": [
"rotational_part"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"dominant_axis_alignment"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Reference rotational sections and dependent features to one dominant semantic axis.",
"semantic_rationale": "A dominant datum axis stabilizes both creation and later parameter edits.",
"check": "Confirm that the dominant axis alignment relationship remains valid after creation or modification."
},
{
"id": "distribution.rotational_part.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.rotational_part.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.rotational_part.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.rotational_part.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.rotational_part.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.rotational_part.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"rotational_part"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "motif.shaft.cylindrical_feature_network_and_stepped_cylindrical_passage",
"kind": "feature_motif",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
],
"required_relations": [],
"context_features": [
"cylindrical_feature_network",
"stepped_cylindrical_passage"
]
},
"guidance": "Represent stepped cylindrical passages as one axis-related feature group rather than unrelated cylindrical cuts.",
"semantic_rationale": "Grouping the passage stages preserves their shared functional axis while allowing individual stage proportions to change."
},
{
"id": "motif.shaft.rotational_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"rotational_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"rotational_body",
"stepped_rotational_profile"
]
},
"guidance": "Represent a rotational body as an ordered semantic profile of coaxial sections.",
"semantic_rationale": "A profile-level representation preserves shaft and hub topology when section proportions change."
},
{
"id": "motif.shaft.shaft_like_body_and_stepped_rotational_profile",
"kind": "feature_motif",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"shaft_like_body",
"stepped_rotational_profile"
],
"required_relations": [],
"context_features": [
"shaft_like_body",
"stepped_rotational_profile"
]
},
"guidance": "Model a shaft-like body through named axial sections and shoulders.",
"semantic_rationale": "Named sections make length and diameter edits local while preserving the overall shaft topology."
},
{
"id": "constraint.shaft.shared_passage_axis",
"kind": "constraint",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"stepped_cylindrical_passage"
],
"required_relations": [
"shared_passage_axis"
],
"context_features": [
"stepped_cylindrical_passage"
]
},
"guidance": "Preserve a common semantic axis through all stages of a stepped cylindrical passage.",
"semantic_rationale": "The relation maintains passage continuity independently of stage diameters and depths.",
"check": "Confirm that the shared passage axis relationship remains valid after creation or modification."
},
{
"id": "constraint.shaft.transition_axis_continuity",
"kind": "constraint",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"conical_transition"
],
"required_relations": [
"transition_axis_continuity"
],
"context_features": [
"conical_transition"
]
},
"guidance": "Keep conical transitions axis-continuous with their participating analytic regions.",
"semantic_rationale": "Axis continuity prevents eccentric transitions without fixing any source dimension.",
"check": "Confirm that the transition axis continuity relationship remains valid after creation or modification."
},
{
"id": "constraint.shaft.coaxial_stack",
"kind": "constraint",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"coaxial_stack"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Preserve coaxiality across the named sections of a rotational stack.",
"semantic_rationale": "Coaxial constraints maintain rotational function across dimensional variants.",
"check": "Confirm that the coaxial stack relationship remains valid after creation or modification."
},
{
"id": "constraint.shaft.dominant_axis_alignment",
"kind": "constraint",
"scope": [
"shaft"
],
"evidence_query": {
"required_features": [
"coaxial_cylindrical_stack",
"rotational_body"
],
"required_relations": [
"dominant_axis_alignment"
],
"context_features": [
"coaxial_cylindrical_stack",
"rotational_body"
]
},
"guidance": "Reference rotational sections and dependent features to one dominant semantic axis.",
"semantic_rationale": "A dominant datum axis stabilizes both creation and later parameter edits.",
"check": "Confirm that the dominant axis alignment relationship remains valid after creation or modification."
},
{
"id": "distribution.shaft.bbox_short_to_long",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "bbox_short_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.shaft.bbox_middle_to_long",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "bbox_middle_to_long",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.shaft.planar_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "planar_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.shaft.cylindrical_area_fraction",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "cylindrical_area_fraction",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.shaft.largest_coaxial_radius_to_transverse_span",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "largest_coaxial_radius_to_transverse_span",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
},
{
"id": "distribution.shaft.smallest_to_largest_coaxial_radius",
"kind": "dimensionless_distribution",
"scope": [
"shaft"
],
"observation_name": "smallest_to_largest_coaxial_radius",
"evidence_query": {
"required_features": [],
"required_relations": [],
"context_features": []
},
"guidance": "Use the family-conditioned dimensionless distribution only when the user has not supplied the corresponding relationship.",
"semantic_rationale": "A ratio distribution transfers scale-independent proportion evidence without exposing source dimensions."
}
]
}