recordExampleGenerationPark2012
Extends from TransiEnt.Grid.Electrical.Base.PartialGenerationPark (Empty partial generation park).
Information
1. Purpose of model
This record can be used in model that have 8 Types of electric generating units. It contains basic parameterization such as installed power, power gradients etc.
2. Level of detail, physical effects considered, and physical insight
(Purely technical component without physical modeling.)
3. Limits of validity
(Purely technical component without physical modeling.)
4. Interfaces
(no remarks)
5. Nomenclature
(no elements)
6. Governing Equations
(no equations)
7. Remarks for Usage
(no remarks)
8. Validation
(no remarks)
9. References
[1] 50HERTZ TRANSMISSION, AMPRION, TENNET TSO and TRANSNETBW. Netzentwicklungsplan Strom 2014 -Zweiter Entwurf der übertragungsnetzbetreiber. 2014,
[2] 50HERTZ TRANSMISSION GMBH, AMPRION GMBH, TENNET TSO GMBH and TRANSNETBW GMBH. Netzentwicklungsplan Strom 2025, 2. Entwurf der übertragungsnetzbetreiber. 2016
[3] BUNDESMINISTERIUM and BUNDESMINISTERIUM DER JUSTIZ UND FüR VERBRAUCHERSCHUTZ. Gesetz für den Ausbau erneuerbarer Energien (Erneuerbare-Energien-Gesetz-EEG 2014). 2014.
[4] L. Andresen, P. Dubucq, R. Peniche Garcia, G. Ackermann, A. Kather, and G. Schmitz, “Transientes Verhalten gekoppelter Energienetze mit hohem Anteil Erneuerbarer Energien: Abschlussbericht des Verbundvorhabens,” Hamburg, 2017.
10. Version History
Model created by Pascal Dubucq (dubucq@tuhh.de) on Mon Aug 18 2014
Parameters
| Type | Name | Default | Description |
|---|---|---|---|
| String | index (from PartialGenerationPark) | fill("", 0) | Click on edit (little book) to see indexing |
| Integer | nPlants (from PartialGenerationPark) | No. of plants in scenario (including e.g. RE) | |
| Integer | nDispPlants (from PartialGenerationPark) | No. of dispatchable plants (plants that get setpoints) | |
| Integer | nMODPlants (from PartialGenerationPark) | nDispPlants | No. of plants participating in intraday optimization |
| Integer | isMOD (from PartialGenerationPark) | 1:nDispPlants | Index set of plants that get setpoints from merit order dispatcher (intraday optimization) |
| Integer | isFRE (from PartialGenerationPark) | {0} | Index set of fluctuating renewable energy plants |
| Integer | isCHP (from PartialGenerationPark) | {0} | Index set of combined heat and power plants (these have time varying power limits) |
| SI.Power | P_min_MOD (from PartialGenerationPark) | P_min[isMOD] | |
| SI.Power | P_max_MOD (from PartialGenerationPark) | P_max[isMOD] | |
| SI.Frequency | P_grad_max_star_MOD (from PartialGenerationPark) | P_grad_max_star[isMOD] | |
| Real | C_var_MOD (from PartialGenerationPark) | C_var[isMOD] | |
| Summary | |||
| SI.Power[nDispPlants] | P_max (from PartialGenerationPark) | Maximum power production of dispatchable plants | |
| SI.Power[nDispPlants] | P_min (from PartialGenerationPark) | Minimum power production of dispatchable plants | |
| SI.Frequency[nDispPlants] | P_grad_max_star (from PartialGenerationPark) | Maximum power gradient with respect to nominal capacity (1/3600 s means full load in 1 hout) | |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy[nDispPlants] | C_var (from PartialGenerationPark) | Variable cost vector of dispatchable plants in MTU per Energy | |
| SI.Power | P_total (from PartialGenerationPark) | sum(P_max) | Sum of installed capacity in generation park |
| Installed capacity, dispatchable units | |||
| Modelica.Units.SI.Power | P_el_n_NUC | 300e6 | Installed capacity of nuclear plant |
| Modelica.Units.SI.Power | P_el_n_BCG | 525e6 | Installed capacity brown coal |
| Modelica.Units.SI.Power | P_el_n_WT | 206e6 | Installed capacity brown coal |
| Modelica.Units.SI.Power | P_el_n_GUDTS | 125e6 | Installed capacity brown coal |
| Modelica.Units.SI.Power | P_el_n_WW1 | 151e6 | Installed capacity brown coal |
| Modelica.Units.SI.Power | P_el_n_WW2 | 138e6 | Installed capacity brown coal |
| Modelica.Units.SI.Power | P_el_n_BC | 134e6 | Installed capacity black coal |
| Modelica.Units.SI.Power | P_el_n_CCP | 402e6 | Installed capacity combined cycle plants |
| Modelica.Units.SI.Power | P_el_n_GT1 | 71e6 | Installed capacity gas turbines |
| Modelica.Units.SI.Power | P_el_n_GT2 | 71e6 | Installed capacity gas turbines |
| Modelica.Units.SI.Power | P_el_n_OIL | 68e6 | Installed capacity mineral oil plants |
| Modelica.Units.SI.Power | P_el_n_OILGT | 31e6 | Installed capacity mineral oil plants |
| Modelica.Units.SI.Power | P_el_n_GAR | 39e6 | Installed capacity garbage plants |
| Modelica.Units.SI.Power | P_el_n_PS | 154e6 | Installed capacity pumped storage |
| Modelica.Units.SI.Power | P_el_n_BM | 157e6 | Installed capacity biomass |
| Installed capacity, fluctuating sources | |||
| Modelica.Units.SI.Power | P_el_n_WindOn | 747e6 | Installed capacity onshore wind |
| Modelica.Units.SI.Power | P_el_n_WindOff | 7e6 | Installed capacity offshore wind |
| Modelica.Units.SI.Power | P_el_n_PV | 798e6 | Installed capacity photovoltaic |
| Modelica.Units.SI.Power | P_el_n_ROH | 106e6 | Installed capacity runoff hydro plants |
| Physical Constraints › Minmum Power | |||
| Real | P_min_star_NUC | 0.2 | Dimensionless minimum power gas turbines |
| Real | P_min_star_BC | 0.4 | Dimensionless minimum power black coal plants |
| Real | P_min_star_BCG | 0.3 | Dimensionless minimum power base load, i.e. brown coal, nuclear and waste incinerator plants |
| Real | P_min_star_CCP | 0.2 | Dimensionless minimum power combined cycle plants |
| Real | P_min_star_GT | 0.2 | Dimensionless minimum power gas turbines |
| Real | P_min_star_OIL | 0.2 | Dimensionless minimum power mineral oil plants |
| Real | P_min_star_GAR | 0.2 | Dimensionless minimum power garbage plants |
| Real | P_min_star_PS | 0 | Dimensionless minimum power pumped storage |
| Real | P_min_star_BM | 0 | Dimensionless minimum power biomass plants |
| Real | P_min_star_CHP | 1e-3 | Minium power in p.u. that should be used for plants that have time dependent minimum values (eg. chp plants) |
| Physical Constraints › Maximum power gradient | |||
| Real | P_grad_max_star_NUC | 0.2/60 | Dimensionless maximum power gradient gas turbines |
| Real | P_grad_max_star_BCG | 0.06/60 | Dimensionless maximum power gradient base load, i.e. brown coal, nuclear and waste incinerator plants |
| Real | P_grad_max_star_BC | 0.08/60 | Dimensionless maximum power gradient black coal |
| Real | P_grad_max_star_CCP | 0.1/60 | Dimensionless maximum power gradient combined cycle plants |
| Real | P_grad_max_star_GT | 0.12/60 | Dimensionless maximum power gradient gas turbines |
| Real | P_grad_max_star_OIL | 0.12/60 | Dimensionless maximum power gradient mineral oil plants |
| Real | P_grad_max_star_GAR | 0.12/60 | Dimensionless maximum power gradient garbage plants |
| Real | P_grad_max_star_PS | 1/60 | Dimensionless maximum power gradient pumped storage |
| Real | P_grad_max_star_BM | 0.12/60 | Dimensionless maximum power gradient biomass |
| Real | P_grad_max_star_ROH | 0.12/60 | Dimensionless maximum power gradient runoff hydro plants |
| Physical Constraints › Inertia | |||
| Modelica.Units.SI.Time | H_gen_ST | 10 | Inertia constant typical steam turbine |
| Modelica.Units.SI.Time | H_gen_GT | 12 | Inertia constant typical gas turbine |
| Modelica.Units.SI.Time | H_gen_CCGT | H_gen_GT/3 + 2*H_gen_ST | Inertia constant typical combined cycle plant |
| Modelica.Units.SI.Time | H_gen_HT | 12 | Hydroturbine |
| Modelica.Units.SI.Time | H_gen_BM | 10 | Inertia constant biomass (gas motor) |
| Modelica.Units.SI.Time | H_gen_RE | 0 | Inertia constant onshore wind |
| Other properties › Efficiency | |||
| Modelica.Units.SI.Efficiency | eta_el_n_NUC | 0.35 | Mean electric efficiency nuclear plants |
| Modelica.Units.SI.Efficiency | eta_el_n_BCG | 0.34 | Mean electric efficiency base load, i.e. brown coal, nuclear and waste incinerator plants |
| Modelica.Units.SI.Efficiency | eta_el_n_BC | 0.4 | Mean electric efficiency black coal |
| Modelica.Units.SI.Efficiency | eta_el_n_CCP | 0.52 | Mean electric efficiency combined cycle plants |
| Modelica.Units.SI.Efficiency | eta_el_n_GT | 0.35 | Mean electric efficiency gas turbines |
| Modelica.Units.SI.Efficiency | eta_el_n_OIL | 0.40 | Mean electric efficiency mineral oil plants |
| Modelica.Units.SI.Efficiency | eta_el_n_GAR | 0.16 | Mean electric efficiency garbage plants |
| Modelica.Units.SI.Efficiency | eta_el_n_PS | 0.95 | Mean electric efficiency biomass |
| Modelica.Units.SI.Efficiency | eta_el_n_BM | 0.35 | Mean electric efficiency biomass |
| Other properties › Variable Costs for Optimization | |||
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_NUC | 8/3.6e9 | Variable cost in monetary units |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_BCG | 12/3.6e9 | Variable Cost in monetary units, base load, i.e. brown coal, nuclear and waste incinerator plants |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_BC | 12/3.6e9 | Variable Cost in monetary units, black coal |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_CCP | 8.6/3.6e9 | Variable Cost in monetary units, combined cycle plants |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_GT | 10/3.6e9 | Variable Cost in monetary units, gas turbines |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_OIL | 10/3.6e9 | Variable Cost in monetary units, mineral oil plants |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_OILGT | 10/3.6e9 | Variable Cost in monetary units, mineral oil plants |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_GAR | 10/3.6e9 | Variable Cost in monetary units, garbage plants |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_PS | 12/3.6e9 | Variable Cost in monetary units, pumped storage |
| TransiEnt.Basics.Units.MonetaryUnitPerEnergy | C_var_BM | 10/3.6e9 | Variable Cost in monetary units, biomass |