forked from s_ranjbar/city_retrofit
added eilat usage to catalog and imports
This commit is contained in:
parent
f146cf3281
commit
5247eda305
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@ -15,6 +15,7 @@ Output formats accepted:
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* ca
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* hft
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* comnet
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* Eilat
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Libs_functions:
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* single family house
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@ -33,7 +33,6 @@ class ComnetCatalog(Catalog):
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self._archetypes = self._read_archetype_file()
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self._schedules = self._read_schedules_file()
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# todo: comment with @Guille, this hypotheses should go in the import factory?
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sensible_convective = ch().comnet_occupancy_sensible_convective
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sensible_radiative = ch().comnet_occupancy_sensible_radiant
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lighting_convective = ch().comnet_lighting_convective
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234
hub/catalog_factories/usage/eilat_catalog.py
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234
hub/catalog_factories/usage/eilat_catalog.py
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@ -0,0 +1,234 @@
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"""
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Eilat usage catalog
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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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import io
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from typing import Dict
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import pandas as pd
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import hub.helpers.constants as cte
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from hub.catalog_factories.catalog import Catalog
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from hub.catalog_factories.data_models.usages.appliances import Appliances
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from hub.catalog_factories.data_models.usages.content import Content
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from hub.catalog_factories.data_models.usages.lighting import Lighting
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from hub.catalog_factories.data_models.usages.occupancy import Occupancy
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from hub.catalog_factories.data_models.usages.domestic_hot_water import DomesticHotWater
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from hub.catalog_factories.data_models.usages.schedule import Schedule
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from hub.catalog_factories.data_models.usages.thermal_control import ThermalControl
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from hub.catalog_factories.data_models.usages.usage import Usage
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from hub.catalog_factories.usage.usage_helper import UsageHelper
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from hub.helpers.configuration_helper import ConfigurationHelper as ch
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class EilatCatalog(Catalog):
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"""
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Eilat catalog class
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"""
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def __init__(self, path):
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self._eilat_archetypes_path = str(path / 'eilat_archetypes.xlsx')
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self._eilat_schedules_path = str(path / 'eilat_schedules_archetypes.xlsx')
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self._archetypes = self._read_archetype_file()
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self._schedules = self._read_schedules_file()
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sensible_convective = ch().comnet_occupancy_sensible_convective
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sensible_radiative = ch().comnet_occupancy_sensible_radiant
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lighting_convective = ch().comnet_lighting_convective
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lighting_radiative = ch().comnet_lighting_radiant
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lighting_latent = ch().comnet_lighting_latent
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appliances_convective = ch().comnet_plugs_convective
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appliances_radiative = ch().comnet_plugs_radiant
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appliances_latent = ch().comnet_plugs_latent
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usages = []
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for schedule_key in self._archetypes['schedules_key']:
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eilat_usage = schedule_key
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schedule_name = self._archetypes['schedules_key'][schedule_key]
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hours_day = None
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days_year = None
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occupancy_archetype = self._archetypes['occupancy'][eilat_usage]
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lighting_archetype = self._archetypes['lighting'][eilat_usage]
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appliances_archetype = self._archetypes['plug loads'][eilat_usage]
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mechanical_air_change = None # eilat provides ventilation rate only
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ventilation_rate = self._archetypes['ventilation rate'][eilat_usage]
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# convert cfm/ft2 to m3/m2.s
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ventilation_rate = ventilation_rate / (cte.METERS_TO_FEET * cte.MINUTES_TO_SECONDS)
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domestic_hot_water_archetype = self._archetypes['water heating'][eilat_usage]
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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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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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if occupancy_density != 0:
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occupancy_density = 1 / occupancy_density
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sensible_convective_internal_gain = occupancy_density * sensible_heat_gain * sensible_convective
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sensible_radiative_internal_gain = occupancy_density * sensible_heat_gain * sensible_radiative
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latent_internal_gain = occupancy_density * latent_heat_gain
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occupancy = Occupancy(occupancy_density,
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sensible_convective_internal_gain,
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sensible_radiative_internal_gain,
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latent_internal_gain,
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self._schedules[schedule_name]['Occupancy'])
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# get lighting
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density = lighting_archetype[4] * pow(cte.METERS_TO_FEET, 2)
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lighting = Lighting(density,
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lighting_convective,
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lighting_radiative,
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lighting_latent,
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self._schedules[schedule_name]['Lights'])
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# get appliances
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density = appliances_archetype[0]
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if density == 'n.a.':
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density = 0
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# convert W/ft2 to W/m2
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density = float(density) * pow(cte.METERS_TO_FEET, 2)
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appliances = Appliances(density,
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appliances_convective,
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appliances_radiative,
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appliances_latent,
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self._schedules[schedule_name]['Receptacle'])
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# get thermal control
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thermal_control = ThermalControl(None,
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None,
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None,
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self._schedules[schedule_name]['HVAC Avail'],
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self._schedules[schedule_name]['HtgSetPt'],
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self._schedules[schedule_name]['ClgSetPt']
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)
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# get domestic hot water
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density = domestic_hot_water_archetype
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# convert Btu/h/occ to W/m2
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density = float(density) * cte.BTU_H_TO_WATTS * occupancy_density
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domestic_hot_water_service_temperature = self._schedules[schedule_name]['WtrHtrSetPt'][0].values[0]
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domestic_hot_water = DomesticHotWater(density,
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None,
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domestic_hot_water_service_temperature,
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self._schedules[schedule_name]['Service Hot Water']
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)
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usages.append(Usage(eilat_usage,
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hours_day,
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days_year,
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mechanical_air_change,
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ventilation_rate,
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occupancy,
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lighting,
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appliances,
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thermal_control,
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domestic_hot_water))
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self._content = Content(usages)
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def _read_schedules_file(self) -> Dict:
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dictionary = {}
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eilat_usages = UsageHelper().eilat_schedules_key_to_eilat_schedules
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eilat_days = UsageHelper().comnet_days
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eilat_data_types = UsageHelper().comnet_data_type_to_hub_data_type
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for usage_name in eilat_usages:
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with open(self._eilat_schedules_path, 'rb') as xls:
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_extracted_data = pd.read_excel(
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io.BytesIO(xls.read()),
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sheet_name=eilat_usages[usage_name],
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skiprows=[0, 1, 2, 3], nrows=39, usecols="A:AA"
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)
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_schedules = {}
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for row in range(0, 39, 3):
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_schedule_values = {}
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schedule_name = _extracted_data.loc[row:row, 'Description'].item()
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schedule_data_type = eilat_data_types[_extracted_data.loc[row:row, 'Type'].item()]
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for day in eilat_days:
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# Monday to Friday
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start = row
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end = row + 1
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if day == cte.FRIDAY:
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start = start + 1
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end = end + 1
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elif day in (cte.SATURDAY, cte.HOLIDAY):
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start = start + 2
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end = end + 2
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_schedule_values[day] = _extracted_data.iloc[start:end, 3:27].to_numpy().tolist()[0]
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_schedule = []
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for day in _schedule_values:
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if schedule_name in ('ClgSetPt', 'HtgSetPt', 'WtrHtrSetPt'):
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# to celsius
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if 'n.a.' in _schedule_values[day]:
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_schedule_values[day] = None
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else:
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_schedule_values[day] = [(float(value)-32)*5/9 for value in _schedule_values[day]]
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_schedule.append(Schedule(schedule_name, _schedule_values[day], schedule_data_type, cte.HOUR, cte.DAY, [day]))
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_schedules[schedule_name] = _schedule
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dictionary[usage_name] = _schedules
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return dictionary
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def _read_archetype_file(self) -> Dict:
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"""
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reads xlsx files containing usage information into a dictionary
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:return : Dict
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"""
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number_usage_types = 3
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with open(self._eilat_archetypes_path, 'rb') as xls:
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_extracted_data = pd.read_excel(
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io.BytesIO(xls.read()),
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sheet_name="Modeling Data",
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skiprows=[0, 1, 2],
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nrows=number_usage_types + 1, usecols="A:AB"
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)
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lighting_data = {}
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plug_loads_data = {}
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occupancy_data = {}
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ventilation_rate = {}
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water_heating = {}
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process_data = {}
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schedules_key = {}
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for j in range(0, number_usage_types):
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usage_parameters = _extracted_data.iloc[j]
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usage_type = usage_parameters[0]
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lighting_data[usage_type] = usage_parameters[1:6].values.tolist()
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plug_loads_data[usage_type] = usage_parameters[8:13].values.tolist()
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occupancy_data[usage_type] = usage_parameters[17:20].values.tolist()
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ventilation_rate[usage_type] = usage_parameters[20:21].item()
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water_heating[usage_type] = usage_parameters[23:24].item()
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process_data[usage_type] = usage_parameters[24:26].values.tolist()
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schedules_key[usage_type] = usage_parameters[27:28].item()
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return {'lighting': lighting_data,
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'plug loads': plug_loads_data,
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'occupancy': occupancy_data,
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'ventilation rate': ventilation_rate,
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'water heating': water_heating,
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'process': process_data,
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'schedules_key': schedules_key
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}
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def names(self, category=None):
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"""
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Get the catalog elements names
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:parm: for usage catalog category filter does nothing as there is only one category (usages)
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"""
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_names = {'usages': []}
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for usage in self._content.usages:
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_names['usages'].append(usage.name)
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return _names
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def entries(self, category=None):
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"""
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Get the catalog elements
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:parm: for usage catalog category filter does nothing as there is only one category (usages)
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"""
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return self._content
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def get_entry(self, name):
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"""
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Get one catalog element by names
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:parm: entry name
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"""
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for usage in self._content.usages:
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if usage.name.lower() == name.lower():
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return usage
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raise IndexError(f"{name} doesn't exists in the catalog")
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@ -90,6 +90,12 @@ class UsageHelper:
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'C-14 Gymnasium': 'C-14 Gymnasium'
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}
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_eilat_schedules_key_to_eilat_schedules = {
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'C-12 Residential': 'C-12 Residential',
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'C-15 Dormitory': 'C-15 Dormitory',
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'C-16 Hotel employees': 'C-16 Hotel employees'
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}
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@property
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def nrcan_day_type_to_hub_days(self):
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"""
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@ -138,3 +144,10 @@ class UsageHelper:
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Get the list of days used in comnet
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"""
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return self._comnet_days
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@property
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def eilat_schedules_key_to_eilat_schedules(self) -> [str]:
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"""
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Get a dictionary to convert hub schedules to eilat schedules
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"""
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return self._eilat_schedules_key_to_eilat_schedules
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@ -10,6 +10,7 @@ from typing import TypeVar
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from hub.catalog_factories.usage.comnet_catalog import ComnetCatalog
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from hub.catalog_factories.usage.nrcan_catalog import NrcanCatalog
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from hub.catalog_factories.usage.eilat_catalog import EilatCatalog
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from hub.helpers.utils import validate_import_export_type
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Catalog = TypeVar('Catalog')
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@ -41,6 +42,13 @@ class UsageCatalogFactory:
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# nrcan retrieves the data directly from github
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return NrcanCatalog(self._path)
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@property
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def _eilat(self):
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"""
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Retrieve Eilat catalog
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"""
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return EilatCatalog(self._path)
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@property
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def catalog(self) -> Catalog:
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"""
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BIN
hub/data/usage/eilat_archetypes.xlsx
Normal file
BIN
hub/data/usage/eilat_archetypes.xlsx
Normal file
Binary file not shown.
BIN
hub/data/usage/eilat_schedules_archetypes.xlsx
Normal file
BIN
hub/data/usage/eilat_schedules_archetypes.xlsx
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Binary file not shown.
28
hub/helpers/data/eilat_function_to_hub_function.py
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28
hub/helpers/data/eilat_function_to_hub_function.py
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"""
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Dictionaries module for Eilat function to hub function
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2023 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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import hub.helpers.constants as cte
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class EilatFunctionToHubFunction:
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"""
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Eilat function to hub function class
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"""
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def __init__(self):
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self._dictionary = {'Residential': cte.RESIDENTIAL,
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'Dormitory': cte.DORMITORY,
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'Hotel employ': cte.HOTEL
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}
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@property
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def dictionary(self) -> dict:
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"""
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Get the dictionary
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:return: {}
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"""
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return self._dictionary
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29
hub/helpers/data/hub_usage_to_eilat_usage.py
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29
hub/helpers/data/hub_usage_to_eilat_usage.py
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"""
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Dictionaries module for hub usage to Eilat usage
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2023 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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import hub.helpers.constants as cte
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class HubUsageToEilatUsage:
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"""
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Hub usage to Eilat usage class
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"""
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def __init__(self):
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self._dictionary = {
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cte.RESIDENTIAL: 'Residential',
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cte.HOTEL: 'Hotel employees',
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cte.DORMITORY: 'Dormitory'
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}
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@property
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def dictionary(self) -> dict:
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"""
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Get the dictionary
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:return: {}
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"""
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return self._dictionary
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@ -7,6 +7,7 @@ Project Coder Pilar Monsalvete Alvarez de Uribarri pilar.monsalvete@concordia.ca
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from hub.helpers.data.hft_function_to_hub_function import HftFunctionToHubFunction
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from hub.helpers.data.montreal_function_to_hub_function import MontrealFunctionToHubFunction
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from hub.helpers.data.eilat_function_to_hub_function import EilatFunctionToHubFunction
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from hub.helpers.data.alkis_function_to_hub_function import AlkisFunctionToHubFunction
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from hub.helpers.data.pluto_function_to_hub_function import PlutoFunctionToHubFunction
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from hub.helpers.data.hub_function_to_nrel_construction_function import HubFunctionToNrelConstructionFunction
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@ -14,6 +15,7 @@ from hub.helpers.data.hub_function_to_nrcan_construction_function import HubFunc
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from hub.helpers.data.hub_usage_to_comnet_usage import HubUsageToComnetUsage
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from hub.helpers.data.hub_usage_to_hft_usage import HubUsageToHftUsage
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from hub.helpers.data.hub_usage_to_nrcan_usage import HubUsageToNrcanUsage
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from hub.helpers.data.hub_usage_to_eilat_usage import HubUsageToEilatUsage
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from hub.helpers.data.montreal_system_to_hub_energy_generation_system import MontrealSystemToHubEnergyGenerationSystem
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from hub.helpers.data.montreal_demand_type_to_hub_energy_demand_type import MontrealDemandTypeToHubEnergyDemandType
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from hub.helpers.data.hub_function_to_montreal_custom_costs_function import HubFunctionToMontrealCustomCostsFunction
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@ -48,6 +50,14 @@ class Dictionaries:
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"""
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return HubUsageToNrcanUsage().dictionary
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@property
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def hub_usage_to_eilat_usage(self) -> dict:
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"""
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Hub usage to Eilat usage, transformation dictionary
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:return: dict
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"""
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return HubUsageToEilatUsage().dictionary
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@property
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def hub_function_to_nrcan_construction_function(self) -> dict:
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"""
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@ -115,3 +125,10 @@ class Dictionaries:
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:return: dict
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"""
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return HubFunctionToMontrealCustomCostsFunction().dictionary
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@property
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def eilat_function_to_hub_function(self) -> dict:
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"""
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Get Eilat's function to hub function, transformation dictionary
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"""
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return EilatFunctionToHubFunction().dictionary
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232
hub/imports/usage/eilat_usage_parameters.py
Normal file
232
hub/imports/usage/eilat_usage_parameters.py
Normal file
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@ -0,0 +1,232 @@
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"""
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EilatUsageParameters extracts the usage properties from Eilat catalog and assigns to each building
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2023 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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import copy
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import logging
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import numpy
|
||||
import hub.helpers.constants as cte
|
||||
from hub.helpers.dictionaries import Dictionaries
|
||||
from hub.city_model_structure.building_demand.usage import Usage
|
||||
from hub.city_model_structure.building_demand.lighting import Lighting
|
||||
from hub.city_model_structure.building_demand.occupancy import Occupancy
|
||||
from hub.city_model_structure.building_demand.appliances import Appliances
|
||||
from hub.city_model_structure.building_demand.thermal_control import ThermalControl
|
||||
from hub.city_model_structure.building_demand.domestic_hot_water import DomesticHotWater
|
||||
from hub.city_model_structure.attributes.schedule import Schedule
|
||||
from hub.city_model_structure.building_demand.internal_gain import InternalGain
|
||||
from hub.catalog_factories.usage_catalog_factory import UsageCatalogFactory
|
||||
|
||||
|
||||
class EilatUsageParameters:
|
||||
"""
|
||||
EilatUsageParameters class
|
||||
"""
|
||||
def __init__(self, city):
|
||||
self._city = city
|
||||
|
||||
def enrich_buildings(self):
|
||||
"""
|
||||
Returns the city with the usage parameters assigned to the buildings
|
||||
:return:
|
||||
"""
|
||||
city = self._city
|
||||
eilat_catalog = UsageCatalogFactory('eilat').catalog
|
||||
for building in city.buildings:
|
||||
usage_name = Dictionaries().hub_usage_to_eilat_usage[building.function]
|
||||
try:
|
||||
archetype_usage = self._search_archetypes(eilat_catalog, usage_name)
|
||||
except KeyError:
|
||||
logging.error('Building %s has unknown usage archetype for usage %s', building.name, usage_name)
|
||||
continue
|
||||
|
||||
for internal_zone in building.internal_zones:
|
||||
if internal_zone.area is None:
|
||||
raise TypeError('Internal zone area not defined, ACH cannot be calculated')
|
||||
if internal_zone.volume is None:
|
||||
raise TypeError('Internal zone volume not defined, ACH cannot be calculated')
|
||||
if internal_zone.area <= 0:
|
||||
raise TypeError('Internal zone area is zero, ACH cannot be calculated')
|
||||
volume_per_area = internal_zone.volume / internal_zone.area
|
||||
usage = Usage()
|
||||
usage.name = usage_name
|
||||
self._assign_values(usage, archetype_usage, volume_per_area, building.cold_water_temperature)
|
||||
usage.percentage = 1
|
||||
self._calculate_reduced_values_from_extended_library(usage, archetype_usage)
|
||||
|
||||
internal_zone.usages = [usage]
|
||||
|
||||
@staticmethod
|
||||
def _search_archetypes(eilat_catalog, usage_name):
|
||||
eilat_archetypes = eilat_catalog.entries('archetypes').usages
|
||||
for building_archetype in eilat_archetypes:
|
||||
if str(usage_name) == str(building_archetype.name):
|
||||
return building_archetype
|
||||
raise KeyError('archetype not found')
|
||||
|
||||
@staticmethod
|
||||
def _assign_values(usage, archetype, volume_per_area, cold_water_temperature):
|
||||
# Due to the fact that python is not a typed language, the wrong object type is assigned to
|
||||
# usage.occupancy when writing usage.occupancy = archetype.occupancy.
|
||||
# Same happens for lighting and appliances. Therefore, this walk around has been done.
|
||||
usage.mechanical_air_change = archetype.ventilation_rate / volume_per_area \
|
||||
* cte.HOUR_TO_SECONDS
|
||||
_occupancy = Occupancy()
|
||||
_occupancy.occupancy_density = archetype.occupancy.occupancy_density
|
||||
_occupancy.sensible_radiative_internal_gain = archetype.occupancy.sensible_radiative_internal_gain
|
||||
_occupancy.latent_internal_gain = archetype.occupancy.latent_internal_gain
|
||||
_occupancy.sensible_convective_internal_gain = archetype.occupancy.sensible_convective_internal_gain
|
||||
_occupancy.occupancy_schedules = archetype.occupancy.schedules
|
||||
usage.occupancy = _occupancy
|
||||
_lighting = Lighting()
|
||||
_lighting.density = archetype.lighting.density
|
||||
_lighting.convective_fraction = archetype.lighting.convective_fraction
|
||||
_lighting.radiative_fraction = archetype.lighting.radiative_fraction
|
||||
_lighting.latent_fraction = archetype.lighting.latent_fraction
|
||||
_lighting.schedules = archetype.lighting.schedules
|
||||
usage.lighting = _lighting
|
||||
_appliances = Appliances()
|
||||
_appliances.density = archetype.appliances.density
|
||||
_appliances.convective_fraction = archetype.appliances.convective_fraction
|
||||
_appliances.radiative_fraction = archetype.appliances.radiative_fraction
|
||||
_appliances.latent_fraction = archetype.appliances.latent_fraction
|
||||
_appliances.schedules = archetype.appliances.schedules
|
||||
usage.appliances = _appliances
|
||||
_control = ThermalControl()
|
||||
_control.cooling_set_point_schedules = archetype.thermal_control.cooling_set_point_schedules
|
||||
_control.heating_set_point_schedules = archetype.thermal_control.heating_set_point_schedules
|
||||
_control.hvac_availability_schedules = archetype.thermal_control.hvac_availability_schedules
|
||||
usage.thermal_control = _control
|
||||
_domestic_hot_water = DomesticHotWater()
|
||||
_domestic_hot_water.density = archetype.domestic_hot_water.density
|
||||
_domestic_hot_water.service_temperature = archetype.domestic_hot_water.service_temperature
|
||||
peak_flow = None
|
||||
if len(cold_water_temperature) > 0:
|
||||
cold_temperature = cold_water_temperature[cte.YEAR]['epw']
|
||||
peak_flow = 0
|
||||
if (archetype.domestic_hot_water.service_temperature - cold_temperature) > 0:
|
||||
peak_flow = archetype.domestic_hot_water.density / cte.WATER_DENSITY / cte.WATER_HEAT_CAPACITY \
|
||||
/ (archetype.domestic_hot_water.service_temperature - cold_temperature)
|
||||
_domestic_hot_water.peak_flow = peak_flow
|
||||
_domestic_hot_water.schedules = archetype.domestic_hot_water.schedules
|
||||
usage.domestic_hot_water = _domestic_hot_water
|
||||
|
||||
@staticmethod
|
||||
def _calculate_reduced_values_from_extended_library(usage, archetype):
|
||||
number_of_days_per_type = {'WD': 231, 'Fri': 52, 'Sat': 82}
|
||||
total = 0
|
||||
for schedule in archetype.thermal_control.hvac_availability_schedules:
|
||||
if schedule.day_types[0] == cte.SATURDAY:
|
||||
for value in schedule.values:
|
||||
total += value * number_of_days_per_type['Fri']
|
||||
elif schedule.day_types[0] == cte.SUNDAY:
|
||||
for value in schedule.values:
|
||||
total += value * number_of_days_per_type['Sat']
|
||||
else:
|
||||
for value in schedule.values:
|
||||
total += value * number_of_days_per_type['WD']
|
||||
|
||||
usage.hours_day = total / 365
|
||||
usage.days_year = 365
|
||||
|
||||
max_heating_setpoint = cte.MIN_FLOAT
|
||||
min_heating_setpoint = cte.MAX_FLOAT
|
||||
|
||||
for schedule in archetype.thermal_control.heating_set_point_schedules:
|
||||
if schedule.values is None:
|
||||
max_heating_setpoint = None
|
||||
min_heating_setpoint = None
|
||||
break
|
||||
if max(schedule.values) > max_heating_setpoint:
|
||||
max_heating_setpoint = max(schedule.values)
|
||||
if min(schedule.values) < min_heating_setpoint:
|
||||
min_heating_setpoint = min(schedule.values)
|
||||
|
||||
min_cooling_setpoint = cte.MAX_FLOAT
|
||||
for schedule in archetype.thermal_control.cooling_set_point_schedules:
|
||||
if schedule.values is None:
|
||||
min_cooling_setpoint = None
|
||||
break
|
||||
if min(schedule.values) < min_cooling_setpoint:
|
||||
min_cooling_setpoint = min(schedule.values)
|
||||
|
||||
usage.thermal_control.mean_heating_set_point = max_heating_setpoint
|
||||
usage.thermal_control.heating_set_back = min_heating_setpoint
|
||||
usage.thermal_control.mean_cooling_set_point = min_cooling_setpoint
|
||||
|
||||
@staticmethod
|
||||
def _calculate_internal_gains(archetype):
|
||||
|
||||
_days = [cte.MONDAY, cte.TUESDAY, cte.WEDNESDAY, cte.THURSDAY, cte.FRIDAY, cte.SATURDAY, cte.SUNDAY, cte.HOLIDAY]
|
||||
_number_of_days_per_type = [51, 50, 50, 50, 50, 52, 52, 10]
|
||||
|
||||
_mean_internal_gain = InternalGain()
|
||||
_mean_internal_gain.type = 'mean_value_of_internal_gains'
|
||||
_base_schedule = Schedule()
|
||||
_base_schedule.type = cte.INTERNAL_GAINS
|
||||
_base_schedule.time_range = cte.DAY
|
||||
_base_schedule.time_step = cte.HOUR
|
||||
_base_schedule.data_type = cte.FRACTION
|
||||
|
||||
_latent_heat_gain = archetype.occupancy.latent_internal_gain
|
||||
_convective_heat_gain = archetype.occupancy.sensible_convective_internal_gain
|
||||
_radiative_heat_gain = archetype.occupancy.sensible_radiative_internal_gain
|
||||
_total_heat_gain = _latent_heat_gain + _convective_heat_gain + _radiative_heat_gain
|
||||
|
||||
_schedule_values = numpy.zeros([24, 8])
|
||||
_sum = 0
|
||||
for day, _schedule in enumerate(archetype.occupancy.schedules):
|
||||
for v_index, value in enumerate(_schedule.values):
|
||||
_schedule_values[v_index, day] = value * _total_heat_gain
|
||||
_sum += value * _total_heat_gain * _number_of_days_per_type[day]
|
||||
|
||||
_total_heat_gain += archetype.lighting.density + archetype.appliances.density
|
||||
_latent_heat_gain += (
|
||||
archetype.lighting.latent_fraction * archetype.lighting.density + archetype.appliances.latent_fraction *
|
||||
archetype.appliances.density
|
||||
)
|
||||
_radiative_heat_gain = (
|
||||
archetype.lighting.radiative_fraction * archetype.lighting.density + archetype.appliances.radiative_fraction *
|
||||
archetype.appliances.density
|
||||
)
|
||||
_convective_heat_gain = (
|
||||
archetype.lighting.convective_fraction * archetype.lighting.density + archetype.appliances.convective_fraction *
|
||||
archetype.appliances.density
|
||||
)
|
||||
|
||||
for day, _schedule in enumerate(archetype.lighting.schedules):
|
||||
for v_index, value in enumerate(_schedule.values):
|
||||
_schedule_values[v_index, day] += value * archetype.lighting.density
|
||||
_sum += value * archetype.lighting.density * _number_of_days_per_type[day]
|
||||
|
||||
for day, _schedule in enumerate(archetype.appliances.schedules):
|
||||
for v_index, value in enumerate(_schedule.values):
|
||||
_schedule_values[v_index, day] += value * archetype.appliances.density
|
||||
_sum += value * archetype.appliances.density * _number_of_days_per_type[day]
|
||||
|
||||
_latent_fraction = 0
|
||||
_radiative_fraction = 0
|
||||
_convective_fraction = 0
|
||||
_average_internal_gain = 0
|
||||
if _total_heat_gain != 0:
|
||||
_latent_fraction = _latent_heat_gain / _total_heat_gain
|
||||
_radiative_fraction = _radiative_heat_gain / _total_heat_gain
|
||||
_convective_fraction = _convective_heat_gain / _total_heat_gain
|
||||
_average_internal_gain = _sum / _total_heat_gain
|
||||
|
||||
_schedules = []
|
||||
for day, current_day in enumerate(_days):
|
||||
_schedule = copy.deepcopy(_base_schedule)
|
||||
_schedule.day_types = [current_day]
|
||||
_schedule.values = _schedule_values[:day]
|
||||
_schedules.append(_schedule)
|
||||
|
||||
_mean_internal_gain.average_internal_gain = _average_internal_gain
|
||||
_mean_internal_gain.latent_fraction = _latent_fraction
|
||||
_mean_internal_gain.convective_fraction = _convective_fraction
|
||||
_mean_internal_gain.radiative_fraction = _radiative_fraction
|
||||
_mean_internal_gain.schedules = _schedules
|
||||
|
||||
return [_mean_internal_gain]
|
|
@ -9,6 +9,7 @@ Code contributors: Pilar Monsalvete Alvarez de Uribarri pilar.monsalvete@concord
|
|||
from hub.helpers.utils import validate_import_export_type
|
||||
from hub.imports.usage.comnet_usage_parameters import ComnetUsageParameters
|
||||
from hub.imports.usage.nrcan_usage_parameters import NrcanUsageParameters
|
||||
from hub.imports.usage.eilat_usage_parameters import EilatUsageParameters
|
||||
|
||||
|
||||
class UsageFactory:
|
||||
|
@ -38,9 +39,20 @@ class UsageFactory:
|
|||
for building in self._city.buildings:
|
||||
building.level_of_detail.usage = 2
|
||||
|
||||
def _eilat(self):
|
||||
"""
|
||||
Enrich the city with Eilat usage library
|
||||
"""
|
||||
EilatUsageParameters(self._city).enrich_buildings()
|
||||
self._city.level_of_detail.usage = 2
|
||||
for building in self._city.buildings:
|
||||
building.level_of_detail.usage = 2
|
||||
|
||||
def enrich(self):
|
||||
"""
|
||||
Enrich the city given to the class using the usage factory given handler
|
||||
:return: None
|
||||
"""
|
||||
getattr(self, self._handler, lambda: None)()
|
||||
|
||||
|
||||
|
|
Loading…
Reference in New Issue
Block a user