Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant

Increasing of energy demand and decreasing of water resources, could make the future energy production as a big challenge. Climate change is one of the main reasons for water resources limitation. Future precipitation and air temperature, change hydrological conditions and directly effect on the hyd...

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Main Authors: Asadolah Akbarian Aghdam, Alimohammad Ahmadvand, Saeed Alimohammadi
Format: Article
Language:fas
Published: University of Tehran 2015-06-01
Series:مدیریت صنعتی
Subjects:
Online Access:https://imj.ut.ac.ir/article_57201_57d49e2d78eec9c43e174033bc37ac8c.pdf
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author Asadolah Akbarian Aghdam
Alimohammad Ahmadvand
Saeed Alimohammadi
author_facet Asadolah Akbarian Aghdam
Alimohammad Ahmadvand
Saeed Alimohammadi
author_sort Asadolah Akbarian Aghdam
collection DOAJ
description Increasing of energy demand and decreasing of water resources, could make the future energy production as a big challenge. Climate change is one of the main reasons for water resources limitation. Future precipitation and air temperature, change hydrological conditions and directly effect on the hydropower production. For showing the future condition and making it possible to manage the hydropower, a mathematical model is developed and is run under Lingo optimization package. Climate changes are evaluated by establishing a group of scenarios of hydrological parameters. In this research a 30 years historical data of Karun4 basin is used to establish the monthly temperature-evaporation models and series of multi-variable discharge models. By using these models, future discharge scenarios are computed by the downloaded scenarios data. The results show a 17.2% reduction on precipitation, a 22.6% increasing on air temperature and a 26.1% increasing on the evaporation. These all cause a 10.9% reduction on the river discharge at the dam entrance. By managing the PF and taking it equal to 0.2, production optimization results a range of reduction between 12 and 46 percent with the average amount of 20% in energy production under a series of restrictions from climate change, plant characteristics and future energy demand.
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spelling doaj.art-3be16e05131c4ffca71949dab26d5e322022-12-21T20:30:36ZfasUniversity of Tehranمدیریت صنعتی2008-58852423-53692015-06-017221524210.22059/imj.2015.5720157201Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 PlantAsadolah Akbarian Aghdam0Alimohammad Ahmadvand1Saeed Alimohammadi2Instructor, Faculty of Water and Environmental Engineering, Shadid Beheshti University, Tehran, IranProf., Faculty of Industrial and Management, Eyvanekey University, Eyvanekey, IranAssistant Prof. Faculty of Water and nvironmental Engineering, Shadid Beheshti University, Tehran, IranIncreasing of energy demand and decreasing of water resources, could make the future energy production as a big challenge. Climate change is one of the main reasons for water resources limitation. Future precipitation and air temperature, change hydrological conditions and directly effect on the hydropower production. For showing the future condition and making it possible to manage the hydropower, a mathematical model is developed and is run under Lingo optimization package. Climate changes are evaluated by establishing a group of scenarios of hydrological parameters. In this research a 30 years historical data of Karun4 basin is used to establish the monthly temperature-evaporation models and series of multi-variable discharge models. By using these models, future discharge scenarios are computed by the downloaded scenarios data. The results show a 17.2% reduction on precipitation, a 22.6% increasing on air temperature and a 26.1% increasing on the evaporation. These all cause a 10.9% reduction on the river discharge at the dam entrance. By managing the PF and taking it equal to 0.2, production optimization results a range of reduction between 12 and 46 percent with the average amount of 20% in energy production under a series of restrictions from climate change, plant characteristics and future energy demand.https://imj.ut.ac.ir/article_57201_57d49e2d78eec9c43e174033bc37ac8c.pdfProduction optimizationHydropower plantclimate changedam reservoirenergy demand
spellingShingle Asadolah Akbarian Aghdam
Alimohammad Ahmadvand
Saeed Alimohammadi
Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
مدیریت صنعتی
Production optimization
Hydropower plant
climate change
dam reservoir
energy demand
title Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
title_full Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
title_fullStr Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
title_full_unstemmed Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
title_short Management of Hydropower Future Production Under Climate Change Impacts. Case study: Karun 4 Plant
title_sort management of hydropower future production under climate change impacts case study karun 4 plant
topic Production optimization
Hydropower plant
climate change
dam reservoir
energy demand
url https://imj.ut.ac.ir/article_57201_57d49e2d78eec9c43e174033bc37ac8c.pdf
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AT alimohammadahmadvand managementofhydropowerfutureproductionunderclimatechangeimpactscasestudykarun4plant
AT saeedalimohammadi managementofhydropowerfutureproductionunderclimatechangeimpactscasestudykarun4plant