161 lines
5.8 KiB
Python
161 lines
5.8 KiB
Python
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"""Unit tests for Phase 9 — Fiber sections + section properties."""
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from __future__ import annotations
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import math
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import numpy as np
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import pytest
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from otko.core import (
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AggregatorDOF,
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CircularPatch,
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ElasticSection,
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FiberSection,
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Fibre,
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Project,
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RectangularPatch,
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SectionAggregator,
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StraightLayer,
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)
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from otko.services import load_project, save_project
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from otko.services.section_properties import (
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compute_section_props,
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expand_fibres,
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)
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# ── RectangularPatch ─────────────────────────────────────────────────
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def test_rectangular_patch_expands_to_correct_count() -> None:
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sec = FiberSection(
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id=1,
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patches=[RectangularPatch(
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material_id=1, n_fib_y=5, n_fib_z=4,
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y_i=-0.1, z_i=-0.1, y_j=0.1, z_j=0.1,
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)],
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)
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fibres = expand_fibres(sec)
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assert fibres.shape == (20, 3)
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# Total area = 0.2 × 0.2 = 0.04 m²
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assert np.sum(fibres[:, 2]) == pytest.approx(0.04, rel=1e-9)
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def test_rectangular_patch_centroid_at_origin() -> None:
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sec = FiberSection(
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id=1,
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patches=[RectangularPatch(
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material_id=1, n_fib_y=8, n_fib_z=8,
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y_i=-0.15, z_i=-0.15, y_j=0.15, z_j=0.15,
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)],
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)
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props = compute_section_props(sec)
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assert props.centroid_y == pytest.approx(0.0, abs=1e-12)
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assert props.centroid_z == pytest.approx(0.0, abs=1e-12)
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# ── CircularPatch ────────────────────────────────────────────────────
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def test_circular_patch_area_approaches_pi_r_squared() -> None:
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r = 0.15
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sec = FiberSection(
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id=1,
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patches=[CircularPatch(
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material_id=1, n_fib_circ=32, n_fib_rad=8,
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r_inner=0.0, r_outer=r,
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)],
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)
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props = compute_section_props(sec)
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expected = math.pi * r ** 2
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# With 32×8 = 256 fibres, area should be close (within ~1%).
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assert props.area == pytest.approx(expected, rel=0.01)
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assert props.centroid_y == pytest.approx(0.0, abs=1e-6)
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assert props.centroid_z == pytest.approx(0.0, abs=1e-6)
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# ── StraightLayer ───────────────────────────────────────────────────
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def test_straight_layer_expands_correctly() -> None:
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sec = FiberSection(
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id=1,
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layers=[StraightLayer(
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material_id=2, n_bars=4, bar_area=0.0005,
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y_start=-0.1, z_start=-0.12,
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y_end=0.1, z_end=-0.12,
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)],
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)
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fibres = expand_fibres(sec)
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assert fibres.shape == (4, 3)
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assert np.sum(fibres[:, 2]) == pytest.approx(0.002)
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# All z coordinates should be -0.12 (horizontal layer).
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np.testing.assert_array_almost_equal(fibres[:, 1], -0.12)
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# ── SectionAggregator ───────────────────────────────────────────────
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def test_section_aggregator_schema() -> None:
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agg = SectionAggregator(
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id=5, name="Fiber+Torsion",
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section_id=1,
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pairings=[AggregatorDOF(material_id=3, dof="T")],
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)
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assert agg.type == "SectionAggregator"
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assert agg.pairings[0].dof == "T"
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# ── Mixed section → Iy / Iz ─────────────────────────────────────────
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def test_Iz_of_rect_matches_analytical() -> None:
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"""Iz = b·h³/12 for a rectangle centred at origin."""
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b, h = 0.3, 0.5 # y-range: -0.15..0.15, z-range: -0.25..0.25
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sec = FiberSection(
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id=1,
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patches=[RectangularPatch(
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material_id=1, n_fib_y=20, n_fib_z=20,
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y_i=-b / 2, z_i=-h / 2, y_j=b / 2, z_j=h / 2,
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)],
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)
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props = compute_section_props(sec)
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# Iz = about z-axis = b·h³/12? No — our convention:
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# Iz = Σ A_i · (y_i - ȳ)² (second moment about the z-axis).
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# For rect: Iz = h·b³/12.
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Iz_exact = h * b ** 3 / 12.0
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Iy_exact = b * h ** 3 / 12.0
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assert props.Iz == pytest.approx(Iz_exact, rel=0.01)
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assert props.Iy == pytest.approx(Iy_exact, rel=0.01)
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# ── Round-trip persistence ───────────────────────────────────────────
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def test_fiber_section_with_patches_round_trips(tmp_path) -> None: # type: ignore[no-untyped-def]
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from otko.core import Node, ElasticBeamColumn
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p = Project(
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nodes=[Node(id=1, coords=(0, 0, 0)), Node(id=2, coords=(1, 0, 0))],
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sections=[
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FiberSection(
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id=1, name="RC-Beam",
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patches=[RectangularPatch(
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material_id=1, n_fib_y=4, n_fib_z=4,
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y_i=-0.15, z_i=-0.25, y_j=0.15, z_j=0.25,
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)],
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layers=[StraightLayer(
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material_id=2, n_bars=3, bar_area=0.0005,
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y_start=-0.12, z_start=-0.22,
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y_end=0.12, z_end=-0.22,
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)],
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),
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SectionAggregator(
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id=2, name="Agg", section_id=1,
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pairings=[AggregatorDOF(material_id=3, dof="T")],
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),
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],
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elements=[ElasticBeamColumn(
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id=1, nodes=(1, 2), section_id=1,
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)],
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)
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path = tmp_path / "fib.osmodel"
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save_project(p, path)
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r = load_project(path)
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fs = r.sections[0]
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assert isinstance(fs, FiberSection)
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assert len(fs.patches) == 1
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assert fs.patches[0].kind == "rect"
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assert len(fs.layers) == 1
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assert fs.layers[0].n_bars == 3
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agg = r.sections[1]
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assert isinstance(agg, SectionAggregator)
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assert agg.pairings[0].dof == "T"
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