Present 49.63 M 49.63 M 49.63 M
Future 48.27 M 48.27 M 53.64 M
-2.73%
Edges 49.63 M Outputs
0.0 %
2.73 %
Node MJ Type
households_water_heater_hybrid_heatpump_air_water_electricity_aggregator 48.27 M Share
97.27 %
Inputs Edges 49.63 M
54.53 %
Type MJ Node
Share 27.06 M environment_air_ambient_heat
18.18 %
Type MJ Node
Share 9,021 K households_final_demand_for_hot_water_electricity
27.29 %
Type MJ Node
Share 13.55 M households_final_demand_for_hot_water_network_gas
Edges 48.27 M Outputs
0.0 %
0.0 %
Node MJ Type
households_water_heater_hybrid_heatpump_air_water_electricity_aggregator 48.27 M Share
100.0 %
Inputs Edges 53.64 M
0.0 %
Type MJ Node
Share 0 environment_air_ambient_heat
0.0 %
Type MJ Node
Share 0 households_final_demand_for_hot_water_electricity
111.11 %
Type MJ Node
Share 53.64 M households_final_demand_for_hot_water_network_gas

Details

Sector households
Use energetic
Fever (Heat)
base_cop
1.86
capacity
electricity: 0.001294498 network_gas: 0.022
cop_cutoff
6.0
cop_per_degree
0.043
efficiency_balanced_with
ambient_heat
efficiency_based_on
electricity
group
households_hot_water
share_in_group
0.0010352609435905743
technology_curve_type
default
type
producer
Network Gas
profile
self: network_gas_input_curve
type
consumer
Node groups
  1. demand_driven
  2. heat_production
  3. etmoses
  4. merit_household_hot_water_producers
  5. application_group
  6. aggregator_producer
  7. lv_net_demand
  8. wacc_households
  9. merit_order_csv_include
  10. costs_building_and_installations_households
Used in Gqueries
  1. biggest_water_heater_share_name
  2. biggest_water_heater_share_value
  3. households_water_heater_hybrid_heatpump_air_water_electricity_base_cop
  4. households_water_heater_hybrid_heatpump_air_water_electricity_cop
  5. households_water_heater_hybrid_heatpump_air_water_electricity_cop_per_degree
  6. households_water_heater_hybrid_heatpump_air_water_electricity_input_of_electricity
  7. households_water_heater_hybrid_heatpump_air_water_electricity_input_of_network_gas
  8. households_water_heater_hybrid_heatpump_air_water_electricity_number_of_units
  9. households_water_heater_hybrid_heatpump_air_water_electricity_output_of_useable_heat
  10. households_water_heater_hybrid_heatpump_electricity_input_curve
  11. households_water_heater_hybrid_heatpump_heat_output_share_network_gas
  12. households_water_heater_hybrid_heatpump_network_gas_input_curve
  13. total_cost_of_households_water_heater_hybrid_heatpump_air_water_electricity
  14. turk_full_load_hours_of_households_water_heater_hybrid_heatpump_air_water_electricity
  15. turk_number_of_units_of_households_water_heater_hybrid_heatpump_air_water_electricity
Used in Inputs
  1. flexibility_heat_pump_water_heating_cop_cutoff
  2. households_heater_hybrid_heatpump_air_water_electricity_heat_output_capacity
  3. households_heater_hybrid_heatpump_air_water_electricity_share
  4. investment_costs_electric_heat_pumps
  5. investment_costs_households_storage_water_heating
Method Label Present Future Unit
technical
coefficient_of_performance Coefficient of Performance 4 1 COP
heat_output_capacity Heat capacity per unit 0.005 0.005 MW / unit
full_load_hours Full load hours 348.4 348.4 hour / year
cost
total_investment_over_lifetime_per(:plant) Investment over lifetime per plant 0 0 EUR / unit
fixed_operation_and_maintenance_costs_per(:plant) Fixed operation and maintenance costs 0 0 EUR / unit / year
variable_operation_and_maintenance_costs_per(:full_load_hour) Variable operation and maintenance costs 0 0 EUR / full load hour
wacc Weighted average cost of capital 2.0 2.0 %
takes_part_in_ets Do emissions have to be paid through the ETS? false false boolean
other
technical_lifetime Technical lifetime 15 15 years
Node Attributes Present Future Change Unit
operational
electricity_output_capacity 0 0 MWe
heat_output_capacity 0.005 0.005 0% MWth
hydrogen_output_capacity 0 0 MW
free_co2_factor 0 0
ccs_capture_rate - -
construction_time 0 0
electrical_efficiency_when_using_coal - -
electrical_efficiency_when_using_wood_pellets - -
full_load_hours 348.4 348.4 0%
households_supplied_per_unit 1 1 0%
land_use_per_unit - -
takes_part_in_ets 0 0 yes=1 / no=0
technical_lifetime 15 15 0% year
typical_input_capacity - - MWinput
output_capacity - - MW
input_efficiency - -
output_efficiency - -
cost
initial_investment 0 0 euro / unit
ccs_investment 0 0 euro / unit
cost_of_installing 0 0 euro / unit
decommissioning_costs 0 0 euro / unit
fixed_operation_and_maintenance_costs_per_year 0 0 euro / unit / year
variable_operation_and_maintenance_costs_per_full_load_hour 0 0 euro / full load hour
variable_operation_and_maintenance_costs_for_ccs_per_full_load_hour 0 0 euro / full load hour
fixed_costs_per_mw_input_capacity - - euro / MWinput
costs_per_mj - -
wacc 0.02 0.02 0%
profitability - - profitable / unprofitable / conditionally_profitable
profit_per_mwh_electricity - - eur/MWh
marginal_costs - - euro / MWh
max_consumption_price - - euro / MWh
merit_order
merit_order_full_load_hours - -
merit_order_capacity_factor - -
merit_order_position - -
security_of_supply
availability 0 0
part_load_operating_point - -
part_load_efficiency_penalty - -
forecasting_error - -
misc
demand_expected_value 49.63 M 49.63 M 0%
excel_id - -
max_demand - -
Node Calculations Present Future Change Unit
demand
demand 49.63 M 48.27 M -2%
preset_demand - -
demand_of_sustainable 0 0
weighted_carrier_cost_per_mj 0.002 0.006 173%
weighted_carrier_co2_per_mj 0.015 0.063 307%
sustainability_share 0.576 0.003 -99%
final_demand 22.57 M 53.64 M 137%
primary_demand 31.05 M 54.46 M 75%
primary_demand_of_fossil 13.18 M 54.27 M 311%
primary_demand_of_sustainable 17.87 M 190 K -98%
primary_demand_of_wood_pellets 416 K 0 -100%
primary_demand_of_biogas 170 K 188 K 10%
primary_demand_of_electricity 1,049 K 0 -100%
primary_demand_of_coal 8,537 K 0 -100%
primary_demand_of_lng 306 K 921 K 200%
primary_demand_of_natural_gas 17.74 M 53.35 M 200%
primary_demand_of_biogenic_waste 455 K 0 -100%
primary_demand_of_non_biogenic_waste 372 K 0 -100%
primary_demand_of_uranium_oxide 1,218 K 0 -100%
primary_demand_of_imported_electricity 792 K 0 -100%
technical
input_capacity 0.005 0.005 -2%
electric_based_input_capacity - - MWinput
heat_based_input_capacity 0.005 0.005 -2% MWinput
cooling_based_input_capacity - - MWinput
number_of_units 7,855.5 7,855.5 0%
costs_per_plant
total_costs_per(:plant) 13.13 34.91 165% euro / plant
fixed_costs_per(:plant) 0 0
cost_of_capital_per(:plant) 0 0
depreciation_costs_per(:plant) 0 0
variable_costs_per(:plant) 13.13 34.91 165%
fuel_costs_per(:plant) 13.13 34.91 165%
co2_emissions_costs_per(:plant) 0 0
captured_biogenic_co2_costs_per(:plant) 0 0
fixed_operation_and_maintenance_costs_per(:plant) 0 0
variable_operation_and_maintenance_costs_per(:plant) 0 0
total_initial_investment_per(:plant) 0 0
costs_per_node
total_costs_per(:node) 103 K 274 K 165%
fixed_costs_per(:node) 0 0
cost_of_capital_per(:node) 0 0
depreciation_costs_per(:node) 0 0
variable_costs_per(:node) 103 K 274 K 165%
fuel_costs_per(:node) 103 K 274 K 165%
co2_emissions_costs_per(:node) 0 0
captured_biogenic_co2_costs_per(:node) 0 0
fixed_operation_and_maintenance_costs_per(:node) 0 0
variable_operation_and_maintenance_costs_per(:node) 0 0
total_initial_investment_per(:node) 0 0
costs_per_mw_electricity
total_costs_per(:mw_electricity) 0 0
fixed_costs_per(:mw_electricity) NaN NaN
cost_of_capital_per(:mw_electricity) NaN NaN
depreciation_costs_per(:mw_electricity) NaN NaN
variable_costs_per(:mw_electricity) 0 0
fuel_costs_per(:mw_electricity) 0 0
co2_emissions_costs_per(:mw_electricity) NaN NaN
captured_biogenic_co2_costs_per(:mw_electricity) NaN NaN
fixed_operation_and_maintenance_costs_per(:mw_electricity) NaN NaN
variable_operation_and_maintenance_costs_per(:mw_electricity) NaN NaN
total_initial_investment_per(:mw_electricity) NaN NaN
costs_per_mwh_electricity
total_costs_per(:mwh_electricity) 0 0
fixed_costs_per(:mwh_electricity) NaN NaN
cost_of_capital_per(:mwh_electricity) NaN NaN
depreciation_costs_per(:mwh_electricity) NaN NaN
variable_costs_per(:mwh_electricity) 0 0
fuel_costs_per(:mwh_electricity) 0 0
co2_emissions_costs_per(:mwh_electricity) NaN NaN
captured_biogenic_co2_costs_per(:mwh_electricity) NaN NaN
fixed_operation_and_maintenance_costs_per(:mwh_electricity) NaN NaN
variable_operation_and_maintenance_costs_per(:mwh_electricity) NaN NaN
total_initial_investment_per(:mwh_electricity) NaN NaN
costs_per_mw_heat
total_costs_per(:mw_heat) 2,680.4 7,125.3 165%
fixed_costs_per(:mw_heat) 0 0
cost_of_capital_per(:mw_heat) 0 0
depreciation_costs_per(:mw_heat) 0 0
variable_costs_per(:mw_heat) 2,680.4 7,125.3 165%
fuel_costs_per(:mw_heat) 2,680.4 7,125.3 165%
co2_emissions_costs_per(:mw_heat) 0 0
captured_biogenic_co2_costs_per(:mw_heat) 0 0
fixed_operation_and_maintenance_costs_per(:mw_heat) 0 0
variable_operation_and_maintenance_costs_per(:mw_heat) 0 0
total_initial_investment_per(:mw_heat) 0 0
costs_per_mwh_heat
total_costs_per(:mwh_heat) 7.69 20.45 165%
fixed_costs_per(:mwh_heat) 0 0
cost_of_capital_per(:mwh_heat) 0 0
depreciation_costs_per(:mwh_heat) 0 0
variable_costs_per(:mwh_heat) 7.69 20.45 165%
fuel_costs_per(:mwh_heat) 7.69 20.45 165%
co2_emissions_costs_per(:mwh_heat) 0 0
captured_biogenic_co2_costs_per(:mwh_heat) 0 0
fixed_operation_and_maintenance_costs_per(:mwh_heat) 0 0
variable_operation_and_maintenance_costs_per(:mwh_heat) 0 0
total_initial_investment_per(:mwh_heat) 0 0