Link materials and lca_materials in the city
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@ -420,7 +420,7 @@ class City:
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"""
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self._lca_materials = value
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def get_lca_material(self, lca_id) -> LcaMaterial:
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def lca_material(self, lca_id) -> LcaMaterial:
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"""
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Get the lca materiol matching the given Id
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:return: LcaMaterial or None
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@ -10,7 +10,8 @@ class NrelLayerArchetype:
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NrelLayerArchetype class
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"""
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def __init__(self, name, solar_absorptance, thermal_absorptance, visible_absorptance, thickness=None,
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conductivity=None, specific_heat=None, density=None, no_mass=False, thermal_resistance=None):
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conductivity=None, specific_heat=None, density=None, no_mass=False, thermal_resistance=None,
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lca_id=None):
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self._thickness = thickness
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self._conductivity = conductivity
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self._specific_heat = specific_heat
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@ -21,6 +22,7 @@ class NrelLayerArchetype:
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self._no_mass = no_mass
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self._name = name
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self._thermal_resistance = thermal_resistance
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self._lca_id = lca_id
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@property
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def thickness(self):
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@ -101,3 +103,11 @@ class NrelLayerArchetype:
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:return: float
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"""
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return self._thermal_resistance
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@property
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def lca_id(self):
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"""
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Get nrel lca_id equivalent for the material
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:return: int
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"""
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return self._lca_id
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@ -71,6 +71,7 @@ class NrelPhysicsInterface:
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for current_layer in c_lib['layers']['layer']:
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material_lib = self._search_construction_type('material', current_layer['material'])
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name = material_lib['@name']
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lca_id = material_lib['@lca_id']
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solar_absorptance = material_lib['solar_absorptance']['#text']
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thermal_absorptance = material_lib['thermal_absorptance']['#text']
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visible_absorptance = material_lib['visible_absorptance']['#text']
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@ -81,7 +82,7 @@ class NrelPhysicsInterface:
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if units != 'm2 K/W':
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raise Exception(f'thermal resistance units = {units}, expected m2 K/W')
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layer = nla(name, solar_absorptance, thermal_absorptance, visible_absorptance, no_mass=no_mass,
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thermal_resistance=thermal_resistance)
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thermal_resistance=thermal_resistance, lca_id=lca_id)
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else:
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thickness = current_layer['thickness']['#text']
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units = current_layer['thickness']['@units']
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@ -100,7 +101,7 @@ class NrelPhysicsInterface:
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if units != 'kg/m3':
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raise Exception(f'density units = {units}, expected kg/m3')
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layer = nla(name, solar_absorptance, thermal_absorptance, visible_absorptance, thickness=thickness,
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conductivity=conductivity, specific_heat=specific_heat, density=density)
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conductivity=conductivity, specific_heat=specific_heat, density=density, lca_id=lca_id)
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layers.append(layer)
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thermal_opening = None
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@ -24,7 +24,7 @@ class Rhino:
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self._max_x = self._max_y = self._max_z = min_float
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@staticmethod
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def _solid_points(coordinates) -> np.ndarray:
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def _solid_points(coordinates):
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solid_points = np.fromstring(coordinates, dtype=float, sep=' ')
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solid_points = GeometryHelper.to_points_matrix(solid_points)
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return solid_points
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@ -7,6 +7,7 @@ Contributor Mohammad Reza mohammad.seyedabadi@mail.concordia.ca
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import xmltodict
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from pathlib import Path
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from city_model_structure.building_demand.material import Material
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from city_model_structure.lca_material import LcaMaterial as LcaMat
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class LcaMaterial:
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@ -23,7 +24,7 @@ class LcaMaterial:
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self._lca = xmltodict.parse(xml.read())
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for material in self._lca["library"]["building_materials"]['material']:
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_lca_material = LcaMaterial()
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_lca_material = LcaMat()
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_lca_material.type = material['@type']
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_lca_material.id = material['@id']
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_lca_material.name = material['@name']
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@ -35,6 +36,6 @@ class LcaMaterial:
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_lca_material.onsite_recycling_ratio = material['onsite_recycling_ratio']
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_lca_material.company_recycling_ratio = material['company_recycling_ratio']
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_lca_material.landfilling_ratio = material['landfilling_ratio']
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_lca_material.cost = material['cost']['#text']
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_lca_material.cost = 10 # todo: change this into material['cost']['#text']
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_lca_material._cost_unit = material['cost']['@unit']
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self._city.lca_materials.append(_lca_material)
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@ -9,7 +9,7 @@ from unittest import TestCase
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from imports.geometry_factory import GeometryFactory
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from imports.construction_factory import ConstructionFactory
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from imports.geometry.helpers.geometry_helper import GeometryHelper
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from imports.life_cycle_assessment_factory import LifeCycleAssessment
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class TestConstructionFactory(TestCase):
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"""
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@ -28,6 +28,7 @@ class TestConstructionFactory(TestCase):
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file = 'pluto_building.gml'
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file_path = (self._example_path / file).resolve()
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self._city = GeometryFactory('citygml', file_path).city
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LifeCycleAssessment('material', self._city).enrich()
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self.assertIsNotNone(self._city, 'city is none')
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return self._city
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@ -60,7 +61,8 @@ class TestConstructionFactory(TestCase):
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if thermal_boundary.surface.type != 'Ground':
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self.assertIsNotNone(thermal_boundary.outside_solar_absorptance, 'outside_solar_absorptance is none')
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self.assertIsNotNone(thermal_boundary.window_ratio, 'window_ratio is none')
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print(thermal_boundary.layers)
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for layer in thermal_boundary.layers:
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self.assertTrue(city.lca_material(layer.material.lca_id) is not None)
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def test_city_with_construction_reduced_library(self):
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"""
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@ -47,8 +47,10 @@ class TestLifeCycleAssessment(TestCase):
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city_file = "../unittests/tests_data/C40_Final.gml"
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city = GeometryFactory('citygml', city_file).city
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LifeCycleAssessment('material', city).enrich()
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for material in city.materials:
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self.assertTrue(len(city.materials) > 0)
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self.assertTrue(len(city.lca_materials) > 0)
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for lca_material in city.lca_materials:
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lca_mat = city.lca_material(lca_material.id)
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self.assertTrue(lca_mat is not None)
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