Present 0 0 0
Future 0 0 0
Edges 0 Outputs
Node MJ Type
energy_hydrogen_after_transport 0 Share
Reversed
100.0 %
Node MJ Type
energy_hydrogen_storage_unused 0 Inversed flexible
0.0 %
Inputs Edges 0
100.0 %
Type MJ Node
Share 0 energy_hydrogen_transport_pipelines
Edges 0 Outputs
Node MJ Type
energy_hydrogen_after_transport 0 Share
Reversed
0.0 %
Node MJ Type
energy_hydrogen_storage_unused 0 Inversed flexible
100.0 %
Inputs Edges 0
100.0 %
Type MJ Node
Share 0 energy_hydrogen_transport_pipelines
Method Label Present Future Unit
technical
input_capacity * number_of_units Installed capacity 0 0 MW
storage[:volume] * number_of_units Total storage capacity 0 0 MWh
cost
total_investment_over_lifetime_per(:mw_input_capacity) Investment over lifetime per MW input 397500 397500 EUR / MW
fixed_operation_and_maintenance_costs_per(:mw_input_capacity) Fixed operation and maintenance costs 10567 10567 EUR / MW / year
variable_operation_and_maintenance_costs_per_full_load_hour Variable operation and maintenance costs 3030 3030 EUR / full load hour
wacc Weighted average cost of capital 7.0 7.0 %
takes_part_in_ets Do emissions have to be paid through the ETS? false false boolean
other
technical_lifetime Technical lifetime 30 30 years
Node Attributes Present Future Change Unit
operational
electricity_output_capacity 00{:class=>"change"}MWe
heat_output_capacity 00{:class=>"change"}MWth
hydrogen_output_capacity 1,0001,000{:class=>"change"}MW
free_co2_factor 00{:class=>"change"}
ccs_capture_rate --{:class=>"change"}
construction_time 66{:class=>"change"}
electrical_efficiency_when_using_coal --{:class=>"change"}
electrical_efficiency_when_using_wood_pellets --{:class=>"change"}
full_load_hours 8,7600{:class=>"change"}
households_supplied_per_unit --{:class=>"change"}
land_use_per_unit --{:class=>"change"}
takes_part_in_ets 00{:class=>"change"}yes=1 / no=0
technical_lifetime 3030{:class=>"change"}year
typical_input_capacity 1,0001,000{:class=>"change"}MWinput
output_capacity --{:class=>"change"}MW
input_efficiency --{:class=>"change"}
output_efficiency --{:class=>"change"}
cost
initial_investment 00{:class=>"change"}euro / unit
ccs_investment 00{:class=>"change"}euro / unit
cost_of_installing 00{:class=>"change"}euro / unit
decommissioning_costs 00{:class=>"change"}euro / unit
fixed_operation_and_maintenance_costs_per_year 10.57 M10.57 M{:class=>"change"}euro / unit / year
variable_operation_and_maintenance_costs_per_full_load_hour 3,0303,030{:class=>"change"}euro / full load hour
variable_operation_and_maintenance_costs_for_ccs_per_full_load_hour 00{:class=>"change"}euro / full load hour
fixed_costs_per_mw_input_capacity 260 K260 K{:class=>"change"}euro / MWinput
costs_per_mj --{:class=>"change"}
wacc 0.070.07{:class=>"change"}
profitability --{:class=>"change"}profitable / unprofitable / conditionally_profitable
profit_per_mwh_electricity --{:class=>"change"}eur/MWh
marginal_costs --{:class=>"change"}euro / MWh
max_consumption_price --{:class=>"change"}euro / MWh
merit_order
merit_order_full_load_hours --{:class=>"change"}
merit_order_capacity_factor --{:class=>"change"}
merit_order_position --{:class=>"change"}
security_of_supply
availability 11{:class=>"change"}
part_load_operating_point --{:class=>"change"}
part_load_efficiency_penalty --{:class=>"change"}
forecasting_error --{:class=>"change"}
misc
demand_expected_value 00{:class=>"change"}
excel_id --{:class=>"change"}
max_demand --{:class=>"change"}
Node Calculations Present Future Change Unit
demand
demand 00{:class=>"change"}
preset_demand --{:class=>"change"}
demand_of_sustainable 00{:class=>"change"}
weighted_carrier_cost_per_mj 0.0170.017{:class=>"change"}
weighted_carrier_co2_per_mj 00{:class=>"change"}
sustainability_share 00{:class=>"change"}
final_demand 00{:class=>"change"}
primary_demand 00{:class=>"change"}
primary_demand_of_fossil 00{:class=>"change"}
primary_demand_of_sustainable 00{:class=>"change"}
technical
input_capacity 1,0001,000{:class=>"change"}
electric_based_input_capacity --{:class=>"change"}MWinput
heat_based_input_capacity --{:class=>"change"}MWinput
cooling_based_input_capacity --{:class=>"change"}MWinput
number_of_units 00{:class=>"change"}
costs_per_plant
total_costs_per(:plant) 594.08 M40.51 M{:class=>"change"}euro / plant
fixed_costs_per(:plant) 40.51 M40.51 M{:class=>"change"}
cost_of_capital_per(:plant) 16.7 M16.7 M{:class=>"change"}
depreciation_costs_per(:plant) 13.25 M13.25 M{:class=>"change"}
variable_costs_per(:plant) 553.57 M0{:class=>"change"}
fuel_costs_per(:plant) 527.03 M0{:class=>"change"}
co2_emissions_costs_per(:plant) 00{:class=>"change"}
captured_biogenic_co2_costs_per(:plant) 00{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:plant) 10.57 M10.57 M{:class=>"change"}
variable_operation_and_maintenance_costs_per(:plant) 26.54 M0{:class=>"change"}
total_initial_investment_per(:plant) 397.5 M397.5 M{:class=>"change"}
costs_per_node
total_costs_per(:node) 00{:class=>"change"}
fixed_costs_per(:node) 00{:class=>"change"}
cost_of_capital_per(:node) 00{:class=>"change"}
depreciation_costs_per(:node) 00{:class=>"change"}
variable_costs_per(:node) 00{:class=>"change"}
fuel_costs_per(:node) 00{:class=>"change"}
co2_emissions_costs_per(:node) 00{:class=>"change"}
captured_biogenic_co2_costs_per(:node) 00{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:node) 00{:class=>"change"}
variable_operation_and_maintenance_costs_per(:node) 00{:class=>"change"}
total_initial_investment_per(:node) 00{:class=>"change"}
costs_per_mw_electricity
total_costs_per(:mw_electricity) 00{:class=>"change"}
fixed_costs_per(:mw_electricity) 00{:class=>"change"}
cost_of_capital_per(:mw_electricity) 00{:class=>"change"}
depreciation_costs_per(:mw_electricity) 00{:class=>"change"}
variable_costs_per(:mw_electricity) 0NaN{:class=>"change"}
fuel_costs_per(:mw_electricity) 0NaN{:class=>"change"}
co2_emissions_costs_per(:mw_electricity) NaNNaN{:class=>"change"}
captured_biogenic_co2_costs_per(:mw_electricity) NaNNaN{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:mw_electricity) 00{:class=>"change"}
variable_operation_and_maintenance_costs_per(:mw_electricity) 0NaN{:class=>"change"}
total_initial_investment_per(:mw_electricity) 00{:class=>"change"}
costs_per_mwh_electricity
total_costs_per(:mwh_electricity) 00{:class=>"change"}
fixed_costs_per(:mwh_electricity) 00{:class=>"change"}
cost_of_capital_per(:mwh_electricity) 00{:class=>"change"}
depreciation_costs_per(:mwh_electricity) 00{:class=>"change"}
variable_costs_per(:mwh_electricity) 0NaN{:class=>"change"}
fuel_costs_per(:mwh_electricity) 0NaN{:class=>"change"}
co2_emissions_costs_per(:mwh_electricity) NaNNaN{:class=>"change"}
captured_biogenic_co2_costs_per(:mwh_electricity) NaNNaN{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:mwh_electricity) 00{:class=>"change"}
variable_operation_and_maintenance_costs_per(:mwh_electricity) 0NaN{:class=>"change"}
total_initial_investment_per(:mwh_electricity) 00{:class=>"change"}
costs_per_mw_heat
total_costs_per(:mw_heat) 00{:class=>"change"}
fixed_costs_per(:mw_heat) 00{:class=>"change"}
cost_of_capital_per(:mw_heat) 00{:class=>"change"}
depreciation_costs_per(:mw_heat) 00{:class=>"change"}
variable_costs_per(:mw_heat) 0NaN{:class=>"change"}
fuel_costs_per(:mw_heat) 0NaN{:class=>"change"}
co2_emissions_costs_per(:mw_heat) NaNNaN{:class=>"change"}
captured_biogenic_co2_costs_per(:mw_heat) NaNNaN{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:mw_heat) 00{:class=>"change"}
variable_operation_and_maintenance_costs_per(:mw_heat) 0NaN{:class=>"change"}
total_initial_investment_per(:mw_heat) 00{:class=>"change"}
costs_per_mwh_heat
total_costs_per(:mwh_heat) 00{:class=>"change"}
fixed_costs_per(:mwh_heat) 00{:class=>"change"}
cost_of_capital_per(:mwh_heat) 00{:class=>"change"}
depreciation_costs_per(:mwh_heat) 00{:class=>"change"}
variable_costs_per(:mwh_heat) 0NaN{:class=>"change"}
fuel_costs_per(:mwh_heat) 0NaN{:class=>"change"}
co2_emissions_costs_per(:mwh_heat) NaNNaN{:class=>"change"}
captured_biogenic_co2_costs_per(:mwh_heat) NaNNaN{:class=>"change"}
fixed_operation_and_maintenance_costs_per(:mwh_heat) 00{:class=>"change"}
variable_operation_and_maintenance_costs_per(:mwh_heat) 0NaN{:class=>"change"}
total_initial_investment_per(:mwh_heat) 00{:class=>"change"}