Found a bug in comnet factory and modified type of data from temperature to any number
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@ -51,7 +51,7 @@ class ComnetCatalog(Catalog):
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ventilation_rate = ventilation_rate / (cte.METERS_TO_FEET * cte.MINUTES_TO_SECONDS)
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ventilation_rate = ventilation_rate / (cte.METERS_TO_FEET * cte.MINUTES_TO_SECONDS)
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# get occupancy
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# get occupancy
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occupancy_density = occupancy_archetype[0] / pow(cte.METERS_TO_FEET,2)
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occupancy_density = occupancy_archetype[0] / pow(cte.METERS_TO_FEET, 2)
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sensible_heat_gain = occupancy_archetype[1] * cte.BTU_H_TO_WATTS
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sensible_heat_gain = occupancy_archetype[1] * cte.BTU_H_TO_WATTS
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latent_heat_gain = occupancy_archetype[1] * cte.BTU_H_TO_WATTS
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latent_heat_gain = occupancy_archetype[1] * cte.BTU_H_TO_WATTS
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if occupancy_density != 0:
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if occupancy_density != 0:
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@ -75,7 +75,7 @@ class UsageHelper:
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_comnet_data_type_to_hub_data_type = {
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_comnet_data_type_to_hub_data_type = {
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'Fraction': cte.FRACTION,
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'Fraction': cte.FRACTION,
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'OnOff': cte.ON_OFF,
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'OnOff': cte.ON_OFF,
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'Temperature': cte.TEMPERATURE
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'Temperature': cte.ANY_NUMBER
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}
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}
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_comnet_schedules_key_to_comnet_schedules = {
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_comnet_schedules_key_to_comnet_schedules = {
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@ -13,7 +13,6 @@ from typing import List, Union
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from city_model_structure.attributes.polygon import Polygon
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from city_model_structure.attributes.polygon import Polygon
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from city_model_structure.attributes.plane import Plane
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from city_model_structure.attributes.plane import Plane
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from city_model_structure.attributes.point import Point
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from city_model_structure.attributes.point import Point
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from city_model_structure.energy_systems.pv_system import PvSystem
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import helpers.constants as cte
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import helpers.constants as cte
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@ -263,22 +262,6 @@ class Surface:
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"""
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"""
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self._holes_polygons = value
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self._holes_polygons = value
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@property
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def pv_system_installed(self) -> PvSystem:
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"""
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Get PV system installed on the surface
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:return: PvSystem
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"""
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return self._pv_system_installed
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@pv_system_installed.setter
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def pv_system_installed(self, value):
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"""
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Set PV system installed on the surface
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:param value: PvSystem
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"""
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self._pv_system_installed = value
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@property
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@property
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def inverse(self) -> Surface:
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def inverse(self) -> Surface:
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"""
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"""
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@ -1,123 +0,0 @@
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"""
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pv_system defines a pv system including all components: PV panels, transformer...
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2022 Concordia CERC group
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Project Coder Pilar Monsalvete Alvarez de Uribarri pilar.monsalvete@concordia.ca
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"""
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from typing import Union
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class PvSystem:
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"""
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PvSystem class
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"""
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def __init__(self):
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self._modules_mean_seasonal_efficiency = None
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self._total_area = None
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self._module_area = None
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self._number_of_modules = None
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self._overall_system_performance_ratio = None
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self._electricity_generation = None
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@property
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def modules_mean_seasonal_efficiency(self) -> Union[None, float]:
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"""
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Get mean modules efficiency (-)
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:return: None or float
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"""
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return self._modules_mean_seasonal_efficiency
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@modules_mean_seasonal_efficiency.setter
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def modules_mean_seasonal_efficiency(self, value):
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"""
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Set mean modules efficiency (-)
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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._modules_mean_seasonal_efficiency = float(value)
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@property
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def total_area(self) -> Union[None, float]:
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"""
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Get total modules area in square meters
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:return: None or float
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"""
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return self._total_area
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@total_area.setter
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def total_area(self, value):
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"""
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Set total modules area in square meters
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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._total_area = float(value)
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@property
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def module_area(self) -> Union[None, float]:
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"""
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Get module area in square meters
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:return: None or float
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"""
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return self._module_area
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@module_area.setter
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def module_area(self, value):
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"""
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Set module area in square meters
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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._module_area = float(value)
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@property
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def number_of_modules(self) -> Union[None, int]:
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"""
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Get number of modules
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:return: None or int
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"""
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return self._number_of_modules
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@number_of_modules.setter
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def number_of_modules(self, value):
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"""
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Set number of modules
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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._number_of_modules = int(value)
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@property
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def overall_system_performance_ratio(self) -> Union[None, float]:
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"""
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Get overall system performance ratio (-)
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:return: None or float
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"""
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return self._overall_system_performance_ratio
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@overall_system_performance_ratio.setter
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def overall_system_performance_ratio(self, value):
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"""
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Set overall system performance 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._overall_system_performance_ratio = float(value)
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@property
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def electricity_generation(self) -> Union[None, float]:
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"""
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Get electricity generation in J
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:return: None or float
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"""
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return self._electricity_generation
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@electricity_generation.setter
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def electricity_generation(self, value):
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"""
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Set electricity generation in J
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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._electricity_generation = float(value)
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@ -156,8 +156,8 @@ class Idf:
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Visible_Absorptance=layer.material.visible_absorptance
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Visible_Absorptance=layer.material.visible_absorptance
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)
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)
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def _add_standard_compact_hourly_schedule(self, usage, schedules):
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def _add_standard_compact_hourly_schedule(self, usage, schedule_type, schedules):
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_kwargs = {'Name': f'{schedules[0].type} schedules {usage}',
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_kwargs = {'Name': f'{schedule_type} schedules {usage}',
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'Schedule_Type_Limits_Name': self.idf_type_limits[schedules[0].data_type],
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'Schedule_Type_Limits_Name': self.idf_type_limits[schedules[0].data_type],
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'Field_1': 'Through: 12/31'}
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'Field_1': 'Through: 12/31'}
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for j, schedule in enumerate(schedules):
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for j, schedule in enumerate(schedules):
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@ -206,23 +206,23 @@ class Idf:
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_schedule.values = _infiltration_values
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_schedule.values = _infiltration_values
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_infiltration_schedules.append(_schedule)
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_infiltration_schedules.append(_schedule)
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for schedule in self._idf.idfobjects[self._HOURLY_SCHEDULE]:
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for schedule in self._idf.idfobjects[self._HOURLY_SCHEDULE]:
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if schedule.Name == f'{_infiltration_schedules[0].type} schedules {thermal_zone.usage}':
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if schedule.Name == f'Infiltration schedules {thermal_zone.usage}':
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return
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return
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return self._add_standard_compact_hourly_schedule(thermal_zone.usage, _infiltration_schedules)
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return self._add_standard_compact_hourly_schedule(thermal_zone.usage, 'Infiltration', _infiltration_schedules)
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def _add_schedules(self, usage, new_schedules, schedule_from_file=False):
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def _add_schedules(self, usage, schedule_type, new_schedules, schedule_from_file=False):
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if schedule_from_file:
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if schedule_from_file:
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new_schedule = new_schedules[0]
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new_schedule = new_schedules[0]
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for schedule in self._idf.idfobjects[self._FILE_SCHEDULE]:
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for schedule in self._idf.idfobjects[self._FILE_SCHEDULE]:
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if schedule.Name == f'{new_schedule.type} schedules {usage}':
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if schedule.Name == f'{schedule_type} schedules {usage}':
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return
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return
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file_name = self._write_schedules_file(usage, new_schedule)
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file_name = self._write_schedules_file(usage, new_schedule)
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return self._add_file_schedule(usage, new_schedule, file_name)
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return self._add_file_schedule(usage, new_schedule, file_name)
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else:
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else:
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for schedule in self._idf.idfobjects[self._HOURLY_SCHEDULE]:
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for schedule in self._idf.idfobjects[self._HOURLY_SCHEDULE]:
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if schedule.Name == f'{new_schedules[0].type} schedules {usage}':
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if schedule.Name == f'{schedule_type} schedules {usage}':
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return
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return
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return self._add_standard_compact_hourly_schedule(usage, new_schedules)
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return self._add_standard_compact_hourly_schedule(usage, schedule_type, new_schedules)
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def _add_construction(self, thermal_boundary):
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def _add_construction(self, thermal_boundary):
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for construction in self._idf.idfobjects[self._CONSTRUCTION]:
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for construction in self._idf.idfobjects[self._CONSTRUCTION]:
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@ -277,15 +277,16 @@ class Idf:
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self._idf.newidfobject(self._ZONE, Name=thermal_zone.id, Volume=thermal_zone.volume)
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self._idf.newidfobject(self._ZONE, Name=thermal_zone.id, Volume=thermal_zone.volume)
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self._add_heating_system(thermal_zone)
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self._add_heating_system(thermal_zone)
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def _add_thermostat(self, usage_zone):
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def _add_thermostat(self, thermal_zone):
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thermostat_name = f'Thermostat {usage_zone.usage}'
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thermostat_name = f'Thermostat {thermal_zone.usage}'
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for thermostat in self._idf.idfobjects[self._THERMOSTAT]:
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for thermostat in self._idf.idfobjects[self._THERMOSTAT]:
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if thermostat.Name == thermostat_name:
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if thermostat.Name == thermostat_name:
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return thermostat
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return thermostat
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# todo: change schedules to schedule name and create schedules using the add_schedule function
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return self._idf.newidfobject(self._THERMOSTAT,
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return self._idf.newidfobject(self._THERMOSTAT,
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Name=thermostat_name,
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Name=thermostat_name,
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Constant_Heating_Setpoint=usage_zone.thermal_control.mean_heating_set_point,
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Heating_Setpoint_Schedule_Name=f'Heating thermostat schedules {thermal_zone.usage}',
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Constant_Cooling_Setpoint=usage_zone.thermal_control.mean_cooling_set_point)
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Cooling_Setpoint_Schedule_Name=f'Cooling thermostat schedules {thermal_zone.usage}')
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def _add_heating_system(self, thermal_zone):
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def _add_heating_system(self, thermal_zone):
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for air_system in self._idf.idfobjects[self._IDEAL_LOAD_AIR_SYSTEM]:
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for air_system in self._idf.idfobjects[self._IDEAL_LOAD_AIR_SYSTEM]:
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@ -301,6 +302,9 @@ class Idf:
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def _add_occupancy(self, thermal_zone):
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def _add_occupancy(self, thermal_zone):
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number_of_people = thermal_zone.occupancy.occupancy_density * thermal_zone.total_floor_area
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number_of_people = thermal_zone.occupancy.occupancy_density * thermal_zone.total_floor_area
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print('aaaaaaaa', thermal_zone.occupancy.sensible_radiative_internal_gain)
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print(thermal_zone.occupancy.sensible_convective_internal_gain)
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print(thermal_zone.occupancy.latent_internal_gain)
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fraction_radiant = thermal_zone.occupancy.sensible_radiative_internal_gain / \
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fraction_radiant = thermal_zone.occupancy.sensible_radiative_internal_gain / \
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(thermal_zone.occupancy.sensible_radiative_internal_gain +
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(thermal_zone.occupancy.sensible_radiative_internal_gain +
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thermal_zone.occupancy.sensible_convective_internal_gain +
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thermal_zone.occupancy.sensible_convective_internal_gain +
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self._add_window_construction_and_material(thermal_opening)
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self._add_window_construction_and_material(thermal_opening)
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usage = thermal_zone.usage
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usage = thermal_zone.usage
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self._add_infiltration_schedules(thermal_zone)
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self._add_infiltration_schedules(thermal_zone)
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# todo: why is this schedule unused?
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# todo: why are there schedules unused?
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self._add_schedules(usage, thermal_zone.lighting.schedules)
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self._add_schedules(usage, 'Lighting', thermal_zone.lighting.schedules)
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self._add_schedules(usage, thermal_zone.occupancy.occupancy_schedules, schedule_from_file=True)
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self._add_schedules(usage, 'Occupancy', thermal_zone.occupancy.occupancy_schedules, schedule_from_file=False)
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self._add_schedules(usage, thermal_zone.thermal_control.hvac_availability_schedules)
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self._add_schedules(usage, 'HVAC AVAIL', thermal_zone.thermal_control.hvac_availability_schedules)
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self._add_schedules(usage, 'Heating thermostat', thermal_zone.thermal_control.heating_set_point_schedules)
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self._add_schedules(usage, 'Cooling thermostat', thermal_zone.thermal_control.cooling_set_point_schedules)
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self._add_zone(thermal_zone)
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self._add_zone(thermal_zone)
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self._add_heating_system(thermal_zone)
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self._add_heating_system(thermal_zone)
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schedule.day_types = [cte.SUNDAY]
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schedule.day_types = [cte.SUNDAY]
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schedule.type = name
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schedule.type = name
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schedule.data_type = SchedulesHelper.data_type_from_comnet(data_type)
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schedule.data_type = SchedulesHelper.data_type_from_comnet(data_type)
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if schedule.data_type == cte.TEMPERATURE:
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if schedule.data_type == cte.ANY_NUMBER:
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values = []
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values = []
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for cell in row_cells[schedules_per_schedule_type:].to_numpy():
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for cell in row_cells[schedules_per_schedule_type:].to_numpy():
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values.append((float(cell) - 32.) * 5 / 9)
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values.append((float(cell) - 32.) * 5 / 9)
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_comnet_to_data_type = {
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_comnet_to_data_type = {
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'Fraction': cte.FRACTION,
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'Fraction': cte.FRACTION,
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'OnOff': cte.ON_OFF,
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'OnOff': cte.ON_OFF,
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'Temperature': cte.TEMPERATURE
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'Temperature': cte.ANY_NUMBER
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}
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}
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# usage
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# usage
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_schedule.day_types = [cte.SUNDAY, cte.HOLIDAY]
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_schedule.day_types = [cte.SUNDAY, cte.HOLIDAY]
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_schedule.type = name
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_schedule.type = name
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_schedule.data_type = SchedulesHelper.data_type_from_comnet(data_type)
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_schedule.data_type = SchedulesHelper.data_type_from_comnet(data_type)
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if _schedule.data_type == cte.TEMPERATURE:
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if _schedule.data_type == cte.ANY_NUMBER:
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values = []
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values = []
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for cell in row_cells[schedules_per_schedule_type:].to_numpy():
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for cell in row_cells[schedules_per_schedule_type:].to_numpy():
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values.append((float(cell) - 32.) * 5 / 9)
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values.append((float(cell) - 32.) * 5 / 9)
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usage_zone.mechanical_air_change = archetype.mechanical_air_change * cte.METERS_TO_FEET ** 2 \
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usage_zone.mechanical_air_change = archetype.mechanical_air_change * cte.METERS_TO_FEET ** 2 \
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* cte.HOUR_TO_MINUTES / cte.METERS_TO_FEET ** 3 / volume_per_area
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* cte.HOUR_TO_MINUTES / cte.METERS_TO_FEET ** 3 / volume_per_area
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_occupancy = Occupancy()
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_occupancy = Occupancy()
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_occupancy.occupancy_density = archetype.occupancy.occupancy_density / cte.METERS_TO_FEET**2
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_occupancy.occupancy_density = archetype.occupancy.occupancy_density * cte.METERS_TO_FEET**2
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_occupancy.sensible_radiative_internal_gain = archetype.occupancy.sensible_radiative_internal_gain \
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_occupancy.sensible_radiative_internal_gain = archetype.occupancy.sensible_radiative_internal_gain \
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* archetype.occupancy.occupancy_density / cte.METERS_TO_FEET**2 \
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* archetype.occupancy.occupancy_density \
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* cte.BTU_H_TO_WATTS
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* cte.BTU_H_TO_WATTS
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_occupancy.latent_internal_gain = archetype.occupancy.latent_internal_gain \
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_occupancy.latent_internal_gain = archetype.occupancy.latent_internal_gain \
|
||||||
* archetype.occupancy.occupancy_density / cte.METERS_TO_FEET**2 \
|
* archetype.occupancy.occupancy_density \
|
||||||
* cte.BTU_H_TO_WATTS
|
* cte.BTU_H_TO_WATTS
|
||||||
_occupancy.sensible_convective_internal_gain = archetype.occupancy.sensible_convective_internal_gain \
|
_occupancy.sensible_convective_internal_gain = archetype.occupancy.sensible_convective_internal_gain \
|
||||||
* archetype.occupancy.occupancy_density / cte.METERS_TO_FEET**2 \
|
* archetype.occupancy.occupancy_density \
|
||||||
* cte.BTU_H_TO_WATTS
|
* cte.BTU_H_TO_WATTS
|
||||||
_occupancy.occupancy_schedules = archetype.occupancy.occupancy_schedules
|
_occupancy.occupancy_schedules = archetype.occupancy.occupancy_schedules
|
||||||
usage_zone.occupancy = _occupancy
|
usage_zone.occupancy = _occupancy
|
||||||
|
|
|
@ -87,7 +87,7 @@ class HftUsageInterface:
|
||||||
_schedule.type = 'heating temperature'
|
_schedule.type = 'heating temperature'
|
||||||
_schedule.time_range = cte.DAY
|
_schedule.time_range = cte.DAY
|
||||||
_schedule.time_step = cte.HOUR
|
_schedule.time_step = cte.HOUR
|
||||||
_schedule.data_type = cte.TEMPERATURE
|
_schedule.data_type = cte.ANY_NUMBER
|
||||||
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
||||||
cte.SUNDAY]
|
cte.SUNDAY]
|
||||||
_values = zone_usage_type['endUses']['space_heating']['schedule']['weekDayProfile']['values']
|
_values = zone_usage_type['endUses']['space_heating']['schedule']['weekDayProfile']['values']
|
||||||
|
@ -108,7 +108,7 @@ class HftUsageInterface:
|
||||||
_schedule.type = 'cooling temperature'
|
_schedule.type = 'cooling temperature'
|
||||||
_schedule.time_range = cte.DAY
|
_schedule.time_range = cte.DAY
|
||||||
_schedule.time_step = cte.HOUR
|
_schedule.time_step = cte.HOUR
|
||||||
_schedule.data_type = cte.TEMPERATURE
|
_schedule.data_type = cte.ANY_NUMBER
|
||||||
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
||||||
cte.SUNDAY]
|
cte.SUNDAY]
|
||||||
_values = zone_usage_type['endUses']['space_cooling']['schedule']['weekDayProfile']['values']
|
_values = zone_usage_type['endUses']['space_cooling']['schedule']['weekDayProfile']['values']
|
||||||
|
@ -209,7 +209,7 @@ class HftUsageInterface:
|
||||||
_schedule.type = 'heating temperature'
|
_schedule.type = 'heating temperature'
|
||||||
_schedule.time_range = cte.DAY
|
_schedule.time_range = cte.DAY
|
||||||
_schedule.time_step = cte.HOUR
|
_schedule.time_step = cte.HOUR
|
||||||
_schedule.data_type = cte.TEMPERATURE
|
_schedule.data_type = cte.ANY_NUMBER
|
||||||
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
||||||
cte.SUNDAY]
|
cte.SUNDAY]
|
||||||
_values = usage_zone_variant['endUses']['space_heating']['schedule']['weekDayProfile']['values']
|
_values = usage_zone_variant['endUses']['space_heating']['schedule']['weekDayProfile']['values']
|
||||||
|
@ -232,7 +232,7 @@ class HftUsageInterface:
|
||||||
_schedule.type = 'cooling temperature'
|
_schedule.type = 'cooling temperature'
|
||||||
_schedule.time_range = cte.DAY
|
_schedule.time_range = cte.DAY
|
||||||
_schedule.time_step = cte.HOUR
|
_schedule.time_step = cte.HOUR
|
||||||
_schedule.data_type = cte.TEMPERATURE
|
_schedule.data_type = cte.ANY_NUMBER
|
||||||
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
_schedule.day_types = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY,
|
||||||
cte.SUNDAY]
|
cte.SUNDAY]
|
||||||
_values = usage_zone_variant['endUses']['space_cooling']['schedule']['weekDayProfile']['values']
|
_values = usage_zone_variant['endUses']['space_cooling']['schedule']['weekDayProfile']['values']
|
||||||
|
|
Loading…
Reference in New Issue
Block a user