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8687b1257d
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ef62e2531f | |||
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ec320a2e1c | |||
8a68118503 | |||
a3ec3c7e19 | |||
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ace666553a |
@ -128,6 +128,12 @@ class NrcanCatalog(Catalog):
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infiltration_rate_for_ventilation_system_on = (
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archetype['infiltration_rate_for_ventilation_system_on'] / cte.HOUR_TO_SECONDS
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)
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infiltration_rate_area_for_ventilation_system_off = (
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archetype['infiltration_rate_area_for_ventilation_system_off'] * 1
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)
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infiltration_rate_area_for_ventilation_system_on = (
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archetype['infiltration_rate_area_for_ventilation_system_on'] * 1
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)
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archetype_constructions = []
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for archetype_construction in archetype['constructions']:
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@ -153,7 +159,6 @@ class NrcanCatalog(Catalog):
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_window)
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archetype_constructions.append(_construction)
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break
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_catalog_archetypes.append(Archetype(archetype_id,
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name,
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function,
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@ -165,7 +170,10 @@ class NrcanCatalog(Catalog):
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extra_loses_due_to_thermal_bridges,
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None,
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infiltration_rate_for_ventilation_system_off,
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infiltration_rate_for_ventilation_system_on))
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infiltration_rate_for_ventilation_system_on,
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infiltration_rate_area_for_ventilation_system_off,
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infiltration_rate_area_for_ventilation_system_on
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))
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return _catalog_archetypes
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def names(self, category=None):
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@ -23,7 +23,10 @@ class Archetype:
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extra_loses_due_to_thermal_bridges,
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indirect_heated_ratio,
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infiltration_rate_for_ventilation_system_off,
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infiltration_rate_for_ventilation_system_on):
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infiltration_rate_for_ventilation_system_on,
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infiltration_rate_area_for_ventilation_system_off,
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infiltration_rate_area_for_ventilation_system_on
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):
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self._id = archetype_id
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self._name = name
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self._function = function
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@ -36,6 +39,8 @@ class Archetype:
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self._indirect_heated_ratio = indirect_heated_ratio
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self._infiltration_rate_for_ventilation_system_off = infiltration_rate_for_ventilation_system_off
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self._infiltration_rate_for_ventilation_system_on = infiltration_rate_for_ventilation_system_on
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self._infiltration_rate_area_for_ventilation_system_off = infiltration_rate_area_for_ventilation_system_off
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self._infiltration_rate_area_for_ventilation_system_on = infiltration_rate_area_for_ventilation_system_on
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@property
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def id(self):
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@ -133,6 +138,22 @@ class Archetype:
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"""
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return self._infiltration_rate_for_ventilation_system_on
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@property
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def infiltration_rate_area_for_ventilation_system_off(self):
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"""
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Get archetype infiltration rate for ventilation system off in m3/sm2
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:return: float
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"""
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return self._infiltration_rate_area_for_ventilation_system_off
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@property
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def infiltration_rate_area_for_ventilation_system_on(self):
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"""
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Get archetype infiltration rate for ventilation system on in m3/sm2
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:return: float
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"""
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return self._infiltration_rate_for_ventilation_system_on
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def to_dictionary(self):
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"""Class content to dictionary"""
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_constructions = []
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@ -149,6 +170,8 @@ class Archetype:
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'indirect heated ratio': self.indirect_heated_ratio,
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'infiltration rate for ventilation off [1/s]': self.infiltration_rate_for_ventilation_system_off,
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'infiltration rate for ventilation on [1/s]': self.infiltration_rate_for_ventilation_system_on,
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'infiltration rate area for ventilation off [m3/sm2]': self.infiltration_rate_area_for_ventilation_system_off,
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'infiltration rate area for ventilation on [m3/sm2]': self.infiltration_rate_area_for_ventilation_system_on,
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'constructions': _constructions
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}
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}
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@ -180,7 +180,7 @@ class Surface:
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@property
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def global_irradiance(self) -> dict:
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"""
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Get global irradiance on surface in J/m2
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Get global irradiance on surface in W/m2
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:return: dict
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"""
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return self._global_irradiance
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@ -188,7 +188,7 @@ class Surface:
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@global_irradiance.setter
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def global_irradiance(self, value):
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"""
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Set global irradiance on surface in J/m2
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Set global irradiance on surface in W/m2
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:param value: dict
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"""
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self._global_irradiance = value
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@ -390,7 +390,7 @@ class Surface:
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@property
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def global_irradiance_tilted(self) -> dict:
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"""
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Get global irradiance on a tilted surface in J/m2
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Get global irradiance on a tilted surface in W/m2
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:return: dict
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"""
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return self._global_irradiance_tilted
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@ -398,7 +398,7 @@ class Surface:
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@global_irradiance_tilted.setter
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def global_irradiance_tilted(self, value):
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"""
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Set global irradiance on a tilted surface in J/m2
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Set global irradiance on a tilted surface in W/m2
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:param value: dict
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"""
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self._global_irradiance_tilted = value
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@ -20,6 +20,8 @@ class ThermalArchetype:
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self._indirect_heated_ratio = None
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self._infiltration_rate_for_ventilation_system_off = None
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self._infiltration_rate_for_ventilation_system_on = None
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self._infiltration_rate_area_for_ventilation_system_off=None
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self._infiltration_rate_area_for_ventilation_system_on=None
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@property
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def constructions(self) -> [Construction]:
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@ -132,3 +134,35 @@ class ThermalArchetype:
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:param value: float
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"""
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self._infiltration_rate_for_ventilation_system_on = value
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@property
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def infiltration_rate_area_for_ventilation_system_off(self):
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"""
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Get infiltration rate for ventilation system off in l/s/m2
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:return: float
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"""
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return self._infiltration_rate_for_ventilation_system_off
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@infiltration_rate_area_for_ventilation_system_off.setter
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def infiltration_rate_area_for_ventilation_system_off(self, value):
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"""
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Set infiltration rate for ventilation system off in l/s/m2
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:param value: float
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"""
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self._infiltration_rate_for_ventilation_system_off = value
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@property
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def infiltration_rate_area_for_ventilation_system_on(self):
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"""
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Get infiltration rate for ventilation system on in l/s/m2
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:return: float
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"""
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return self._infiltration_rate_for_ventilation_system_on
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@infiltration_rate_area_for_ventilation_system_on.setter
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def infiltration_rate_area_for_ventilation_system_on(self, value):
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"""
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Set infiltration rate for ventilation system on in l/s/m2
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:param value: float
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"""
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self._infiltration_rate_for_ventilation_system_on = value
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@ -44,6 +44,8 @@ class ThermalZone:
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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._infiltration_rate_area_system_on = None
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self._infiltration_rate_area_system_off = None
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self._volume = volume
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self._ordinate_number = None
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self._view_factors_matrix = None
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@ -166,6 +168,24 @@ class ThermalZone:
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self._infiltration_rate_system_off = self._parent_internal_zone.thermal_archetype.infiltration_rate_for_ventilation_system_off
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return self._infiltration_rate_system_off
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@property
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def infiltration_rate_area_system_on(self):
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"""
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Get thermal zone infiltration rate system on in air changes per second (1/s)
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:return: None or float
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"""
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self._infiltration_rate_area_system_on = self._parent_internal_zone.thermal_archetype.infiltration_rate_area_for_ventilation_system_on
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return self._infiltration_rate_area_system_on
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@property
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def infiltration_rate_area_system_off(self):
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"""
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Get thermal zone infiltration rate system off in air changes per second (1/s)
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:return: None or float
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"""
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self._infiltration_rate_area_system_off = self._parent_internal_zone.thermal_archetype.infiltration_rate_area_for_ventilation_system_off
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return self._infiltration_rate_area_system_off
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@property
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def volume(self):
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"""
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File diff suppressed because it is too large
Load Diff
@ -393,9 +393,9 @@ class Idf:
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thermostat = self._add_thermostat(thermal_zone)
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self._idf.newidfobject(self._IDEAL_LOAD_AIR_SYSTEM,
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Zone_Name=zone_name,
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System_Availability_Schedule_Name=f'HVAC AVAIL SCHEDULES {thermal_zone.usage_name}',
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Heating_Availability_Schedule_Name=f'HVAC AVAIL SCHEDULES {thermal_zone.usage_name}',
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Cooling_Availability_Schedule_Name=f'HVAC AVAIL SCHEDULES {thermal_zone.usage_name}',
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System_Availability_Schedule_Name=f'Thermostat_availability schedules {thermal_zone.usage_name}',
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Heating_Availability_Schedule_Name=f'Thermostat_availability schedules {thermal_zone.usage_name}',
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Cooling_Availability_Schedule_Name=f'Thermostat_availability schedules {thermal_zone.usage_name}',
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Template_Thermostat_Name=thermostat.Name)
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def _add_occupancy(self, thermal_zone, zone_name):
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@ -455,7 +455,7 @@ class Idf:
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)
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def _add_infiltration(self, thermal_zone, zone_name):
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schedule = f'Infiltration schedules {thermal_zone.usage_name}'
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schedule = f'INF_CONST schedules {thermal_zone.usage_name}'
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_infiltration = thermal_zone.infiltration_rate_system_off * cte.HOUR_TO_SECONDS
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self._idf.newidfobject(self._INFILTRATION,
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Name=f'{zone_name}_infiltration',
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@ -465,6 +465,17 @@ class Idf:
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Air_Changes_per_Hour=_infiltration
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)
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def _add_infiltration_surface(self, thermal_zone, zone_name):
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schedule = f'INF_CONST schedules {thermal_zone.usage_name}'
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_infiltration = thermal_zone.infiltration_rate_area_system_off*1
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self._idf.newidfobject(self._INFILTRATION,
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Name=f'{zone_name}_infiltration',
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Schedule_Name=schedule,
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Design_Flow_Rate_Calculation_Method='Flow/ExteriorWallArea',
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Flow_Rate_per_Exterior_Surface_Area=_infiltration
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)
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def _add_ventilation(self, thermal_zone, zone_name):
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schedule = f'Ventilation schedules {thermal_zone.usage_name}'
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_air_change = thermal_zone.mechanical_air_change * cte.HOUR_TO_SECONDS
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@ -550,9 +561,12 @@ class Idf:
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self._add_schedules(usage, 'DHW_prof', thermal_zone.domestic_hot_water.schedules)
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_new_schedules = self._create_yearly_values_schedules('cold_temp', building.cold_water_temperature[cte.HOUR])
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self._add_schedules(usage, 'cold_temp', _new_schedules)
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_new_schedules = self._create_constant_value_schedules('DHW_temp', service_temperature)
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self._add_schedules(usage, 'DHW_temp', _new_schedules)
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_new_schedules = self._create_constant_value_schedules('INF_CONST', 1)
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self._add_schedules(usage, 'INF_CONST', _new_schedules)
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_new_schedules = self._create_constant_value_schedules('Thermostat_availability', 1)
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self._add_schedules(usage, 'Thermostat_availability', _new_schedules)
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_occ = thermal_zone.occupancy
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if _occ.occupancy_density == 0:
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_total_heat = 0
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@ -563,7 +577,7 @@ class Idf:
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self._add_schedules(usage, 'Activity Level', _new_schedules)
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self._add_zone(thermal_zone, building.name)
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self._add_heating_system(thermal_zone, building.name)
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self._add_infiltration(thermal_zone, building.name)
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self._add_infiltration_surface(thermal_zone, building.name)
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self._add_ventilation(thermal_zone, building.name)
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self._add_occupancy(thermal_zone, building.name)
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self._add_lighting(thermal_zone, building.name)
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@ -611,6 +625,18 @@ class Idf:
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Reporting_Frequency="Hourly",
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)
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self._idf.newidfobject(
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"OUTPUT:VARIABLE",
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Variable_Name="Zone Air Temperature",
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Reporting_Frequency="Hourly",
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)
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self._idf.newidfobject(
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"OUTPUT:VARIABLE",
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Variable_Name="Zone Air Relative Humidity",
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Reporting_Frequency="Hourly",
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)
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# post-process to erase windows associated to adiabatic walls
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windows_list = []
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for window in self._idf.idfobjects[self._WINDOW]:
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@ -21,9 +21,10 @@ class EnergyBuildingsExportsFactory:
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"""
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Energy Buildings exports factory class
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"""
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def __init__(self, handler, city, path, custom_insel_block='d18599', target_buildings=None):
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def __init__(self, handler, city, path, custom_insel_block='d18599', target_buildings=None, weather_file=None):
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self._city = city
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self._export_type = '_' + handler.lower()
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self._weather_file = weather_file
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validate_import_export_type(EnergyBuildingsExportsFactory, handler)
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if isinstance(path, str):
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path = Path(path)
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@ -54,12 +55,13 @@ class EnergyBuildingsExportsFactory:
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"""
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idf_data_path = (Path(__file__).parent / './building_energy/idf_files/').resolve()
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url = wh().epw_file(self._city.region_code)
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weather_path = (Path(__file__).parent.parent / f'data/weather/epw/{url.rsplit("/", 1)[1]}').resolve()
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if not weather_path.exists():
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with open(weather_path, 'wb') as epw_file:
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if self._weather_file is None:
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self._weather_file = (Path(__file__).parent.parent / f'data/weather/epw/{url.rsplit("/", 1)[1]}').resolve()
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if not self._weather_file.exists():
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with open(self._weather_file, 'wb') as epw_file:
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epw_file.write(requests.get(url, allow_redirects=True).content)
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return Idf(self._city, self._path, (idf_data_path / 'Minimal.idf'), (idf_data_path / 'Energy+.idd'), weather_path,
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target_buildings=self._target_buildings)
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return Idf(self._city, self._path, (idf_data_path / 'Minimal.idf'), (idf_data_path / 'Energy+.idd'),
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self._weather_path, target_buildings=self._target_buildings)
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@property
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def _cerc_idf(self):
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|
@ -25,6 +25,7 @@ KILO_WATTS_HOUR_TO_JULES = 3600000
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WATTS_HOUR_TO_JULES = 3600
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GALLONS_TO_QUBIC_METERS = 0.0037854117954011185
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# time
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SECOND = 'second'
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MINUTE = 'minute'
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|
@ -67,6 +67,8 @@ class NrcanPhysicsParameters:
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thermal_archetype.indirect_heated_ratio = 0
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thermal_archetype.infiltration_rate_for_ventilation_system_on = catalog_archetype.infiltration_rate_for_ventilation_system_on
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thermal_archetype.infiltration_rate_for_ventilation_system_off = catalog_archetype.infiltration_rate_for_ventilation_system_off
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thermal_archetype.infiltration_rate_area_for_ventilation_system_on = catalog_archetype.infiltration_rate_area_for_ventilation_system_on
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thermal_archetype.infiltration_rate_area_for_ventilation_system_off = catalog_archetype.infiltration_rate_area_for_ventilation_system_off
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_constructions = []
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for catalog_construction in catalog_archetype.constructions:
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construction = Construction()
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|
@ -34,7 +34,7 @@ class SimplifiedRadiosityAlgorithm:
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for key in self._results:
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_irradiance = {}
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header_name = key.split(':')
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result = [x * cte.WATTS_HOUR_TO_JULES for x in self._results[key]]
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result = [x for x in self._results[key]]
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city_object_name = header_name[1]
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building = self._city.city_object(city_object_name)
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surface_id = header_name[2]
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|
0
hub/imports/weather/EPWCLEANER
Normal file
0
hub/imports/weather/EPWCLEANER
Normal file
@ -1,4 +1,4 @@
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"""
|
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Hub version number
|
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"""
|
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__version__ = '0.2.0.8'
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__version__ = '0.2.0.9'
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|
@ -1,5 +1,5 @@
|
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xmltodict
|
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numpy
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numpy==1.26.4
|
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trimesh[all]
|
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pyproj
|
||||
pandas
|
||||
|
Loading…
Reference in New Issue
Block a user