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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant abstract "The Ain Beni Mathar Integrated Thermo Solar Combined Cycle Power Plant (also known as ISCC Ain Beni Mathar or Aïn Beni Mathar ISCC) is a integrated solar combined cycle power station in the commune of Ain Bni Mathar, in the Jerada province, Oriental region, Morocco.The plant site, which has a total area of 160 hectares (395 acres), is characterized by a very large solar field, covering about 88 hectares (217 acres).The total capacity of the plant is 472 MWe of which up to 20 MWe may be delivered from solar energy, and can generate an average annual energy production of about 3,538 GW·h. The plant uses natural gas as fuel. It is connected via a 12.6 km long pipe to the Maghreb-Europe (GME) pipeline.With a total cost of 4.6 billion dirhams, ($554 million), the project was funded by the African Development Bank (AfBD), the Official Credit Institute of Spain (ICO) and the Global Environment Facility (GEF) through a grant of $43.2 million, with the balance being provided by L'Office National de l'Électricité (ONE).The construction started 28 March 2008 and was commissioned in 2011.The plant consists of two 150.28 Mwe Alstom GT13E gas turbines fueled by natural gas, a 172 Mwe Alstom DKYZ2-1N41B steam turbine, a 183,200 m2 (1,972,000 sq ft) collector surface solar parabolic trough field, a solar heat exchanger and two heat recovery exchangers (recovery boilers), one for each gas turbine. The recovery boiler recovers the gas turbine waste heat.The solar energy collected at the parabolic troughs can increase the flow of steam produced in the recovery boilers. The steam produced in the two recovery boilers is expanded in the three body steam turbine (High, Medium and Low Pressure).The solar radiation can contribute to up to 20 Mwe of the power plant output.It is understood that the solar field does not increase the total power, but simply lowers the specific consumption (from 6912.5 kJ/kW·h, at full power, to 6588.8 kJ/kW·h at full solar power).The energy produced is transferred to the interconnection of Oujda and Bourdim via three 225 kV lines.Condenser cooling is via an air condenser, and a water consumption of 850,000 m3/year.The Combined Cycle component has a 93% availability factor and the Solar Field has a 95% availability factor.Specific consumption of the GT13E gas turbine is 10080 kJ/kW·h.Solar field input temperature is 292 °C (558 °F), output temperature is 392 °C (738 °F).One collector is 150 mt long and 5,7 mt wide.".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant averageAnnualGeneration "1.27368E16".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant buildingStartDate "2008".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant buildingStartYear "2008".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant country Morocco.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant installedCapacity "4.72E8".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant location Ain_Bni_Mathar.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant openingYear "2011".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant status "O".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageExternalLink www.one.org.ma.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink African_Development_Bank.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Ain_Bni_Mathar.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Alstom.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Availability_factor.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Category:Natural_gas-fired_power_stations_in_Morocco.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Category:Solar_power_stations_in_Morocco.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Combined_cycle.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink GW·h.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Gas_turbine.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Integrated_solar_combined_cycle.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Jerada.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Kilowatt_hour.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink List_of_solar_thermal_power_stations.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Morocco.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Natural_gas.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Oriental_(Morocco).
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Parabolic_trough.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Solar_thermal_energy.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Steam_turbine.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLink Watt.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLinkText "Ain Beni Mathar Integrated Thermo Solar Combined Cycle Power Plant".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLinkText "Ain Beni Mathar Solar-Thermal Power Station".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLinkText "Ain Beni Mathar".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant wikiPageWikiLinkText "Thermo Solar Combined Cycle Power Plant".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant commissioned "2011".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant constructionBegan "2008".
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant country Morocco.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant location Ain_Bni_Mathar.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant locationMap "Morocco".
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant name "Ain Beni Mathar Integrated Thermo Solar Combined Cycle Power Plant".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant operator "L'Office National de l'Électricité (ONE)".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant psAnnualGeneration "3538.0".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant psElectricalCapacity "472.0".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant psUnitsManuModel Alstom.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant status "O".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant thCombinedCycle "yes".
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant thFuelPrimary Natural_gas.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant website www.one.org.ma.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant subject Category:Natural_gas-fired_power_stations_in_Morocco.
- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant subject Category:Solar_power_stations_in_Morocco.
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- Ain_Beni_Mathar_Integrated_Thermo_Solar_Combined_Cycle_Power_Plant comment "The Ain Beni Mathar Integrated Thermo Solar Combined Cycle Power Plant (also known as ISCC Ain Beni Mathar or Aïn Beni Mathar ISCC) is a integrated solar combined cycle power station in the commune of Ain Bni Mathar, in the Jerada province, Oriental region, Morocco.The plant site, which has a total area of 160 hectares (395 acres), is characterized by a very large solar field, covering about 88 hectares (217 acres).The total capacity of the plant is 472 MWe of which up to 20 MWe may be delivered from solar energy, and can generate an average annual energy production of about 3,538 GW·h. ".
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