217 lines
5.8 KiB
Python
217 lines
5.8 KiB
Python
"""
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ThermalZone module
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2020 Project Author Guille Gutierrez guillermo.gutierrezmorote@concordia.ca
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Contributors Pilar Monsalvete Alvarez de Uribarri pilar.monsalvete@concordia.ca
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"""
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import uuid
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from typing import List, TypeVar, Union
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from city_model_structure.building_demand.usage_zone import UsageZone
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import ast
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ThermalBoundary = TypeVar('ThermalBoundary')
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Polyhedron = TypeVar('Polyhedron')
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class ThermalZone:
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"""
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ThermalZone class
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"""
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def __init__(self, thermal_boundaries, volume):
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self._floor_area = None
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self._thermal_boundaries = thermal_boundaries
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self._is_mechanically_ventilated = None
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self._additional_thermal_bridge_u_value = None
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self._effective_thermal_capacity = None
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self._indirectly_heated_area_ratio = None
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self._infiltration_rate_system_on = None
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self._infiltration_rate_system_off = None
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self._usage_zones = []
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self._volume = volume
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self._volume_geometry = None
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self._id = None
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self._ordinate_number = None
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@property
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def id(self):
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"""
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Get thermal zone id, an universally unique identifier randomly generated
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:return: str
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"""
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if self._id is None:
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self._id = uuid.uuid4()
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return self._id
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@property
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def is_mechanically_ventilated(self) -> Union[None, bool]:
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"""
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Get thermal zone mechanical ventilation flag
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:return: None or Boolean
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"""
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return self._is_mechanically_ventilated
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@is_mechanically_ventilated.setter
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def is_mechanically_ventilated(self, value):
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"""
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Set thermal zone mechanical ventilation flag
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:param value: Boolean
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"""
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if value is not None:
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self._is_mechanically_ventilated = ast.literal_eval(value)
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@property
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def floor_area(self):
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"""
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Get thermal zone floor area in m2
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:return: float
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"""
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if self._floor_area is None:
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self._floor_area = 0
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for thermal_boundary in self.thermal_boundaries:
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s = thermal_boundary.surface
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if s.type == 'Ground':
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self._floor_area += s.perimeter_polygon.area
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return self._floor_area
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@property
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def thermal_boundaries(self) -> List[ThermalBoundary]:
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"""
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Get thermal boundaries bounding with the thermal zone
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:return: [ThermalBoundary]
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"""
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return self._thermal_boundaries
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@property
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def additional_thermal_bridge_u_value(self) -> Union[None, float]:
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"""
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Get thermal zone additional thermal bridge u value W/m2K
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:return: None or float
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"""
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return self._additional_thermal_bridge_u_value
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@additional_thermal_bridge_u_value.setter
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def additional_thermal_bridge_u_value(self, value):
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"""
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Set thermal zone additional thermal bridge u value W/m2K
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:param value: float
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"""
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if value is not None:
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self._additional_thermal_bridge_u_value = float(value)
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@property
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def effective_thermal_capacity(self) -> Union[None, float]:
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"""
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Get thermal zone effective thermal capacity in J/m2K
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:return: None or float
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"""
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return self._effective_thermal_capacity
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@effective_thermal_capacity.setter
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def effective_thermal_capacity(self, value):
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"""
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Set thermal zone effective thermal capacity in J/m2K
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:param value: float
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"""
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if value is not None:
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self._effective_thermal_capacity = float(value)
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@property
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def indirectly_heated_area_ratio(self) -> Union[None, float]:
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"""
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Get thermal zone indirectly heated area ratio
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:return: None or float
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"""
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return self._indirectly_heated_area_ratio
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@indirectly_heated_area_ratio.setter
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def indirectly_heated_area_ratio(self, value):
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"""
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Set thermal zone indirectly heated area ratio
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:param value: float
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"""
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if value is not None:
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self._indirectly_heated_area_ratio = float(value)
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@property
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def infiltration_rate_system_on(self) -> Union[None, float]:
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"""
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Get thermal zone infiltration rate system on in air changes per hour (ACH)
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:return: None or float
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"""
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return self._infiltration_rate_system_on
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@infiltration_rate_system_on.setter
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def infiltration_rate_system_on(self, value):
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"""
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Set thermal zone infiltration rate system on in air changes per hour (ACH)
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:param value: float
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"""
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if value is not None:
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self._infiltration_rate_system_on = float(value)
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@property
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def infiltration_rate_system_off(self) -> Union[None, float]:
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"""
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Get thermal zone infiltration rate system off in air changes per hour (ACH)
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:return: None or float
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"""
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return self._infiltration_rate_system_off
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@infiltration_rate_system_off.setter
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def infiltration_rate_system_off(self, value):
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"""
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Set thermal zone infiltration rate system on in air changes per hour (ACH)
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:param value: float
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"""
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if value is not None:
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self._infiltration_rate_system_off = float(value)
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@property
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def usage_zones(self) -> List[UsageZone]:
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"""
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Get thermal zone usage zones
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:return: [UsageZone]
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"""
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return self._usage_zones
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@usage_zones.setter
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def usage_zones(self, values):
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"""
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Set thermal zone usage zones
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:param values: [UsageZone]
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"""
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self._usage_zones = values
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@property
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def volume(self):
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"""
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Get thermal zone volume
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:return: float
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"""
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return self._volume
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@property
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def volume_geometry(self) -> Polyhedron:
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"""
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Get the polyhedron defined by the thermal zone
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:return: Polyhedron
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"""
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return self._volume_geometry
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@property
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def ordinate_number(self) -> Union[None, int]:
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"""
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Get the order in which the thermal_zones need to be enumerated
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:return: None or int
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"""
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return self._ordinate_number
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@ordinate_number.setter
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def ordinate_number(self, value):
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"""
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Set a specific order of the zones to be called
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:param value: int
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"""
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if value is not None:
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self._ordinate_number = int(value)
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