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Erschienen in: Water Resources Management 12/2018

13.07.2018

Optimization of Run-of-River Hydropower Plant Design under Climate Change Conditions

verfasst von: Parisa Sarzaeim, Omid Bozorg-Haddad, Babak Zolghadr-Asli, Elahe Fallah-Mehdipour, Hugo A. Loáiciga

Erschienen in: Water Resources Management | Ausgabe 12/2018

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Abstract

The assessment of climate change and its impacts on hydropower generation is a complex issue. This paper evaluates the application of representative concentration pathways (RCPs, 2.6, 4.5, and 8.5) with the change factor (CF) method and the statistical downscaling method (SDSM) to generate six climatic scenarios of monthly temperature and rainfall over the period 2020–2049 in the Karkheh basin, Iran. The identification of unit hydrographs and component flows from rainfall, evaporation and streamflow data (IHACRES) model was employed to simulate runoff for the purpose of designing a run-of-river hydropower plant in the Karkheh basin. The non-dominated sorting genetic algorithm (NSGA)-II was employed to maximize yearly energy generation and the plant factor, simultaneously. Results indicate the runoff scenarios associated with the SDSM lead to higher run-of-river hydropower generation in 2020–2049 compared to the CF results.

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Metadaten
Titel
Optimization of Run-of-River Hydropower Plant Design under Climate Change Conditions
verfasst von
Parisa Sarzaeim
Omid Bozorg-Haddad
Babak Zolghadr-Asli
Elahe Fallah-Mehdipour
Hugo A. Loáiciga
Publikationsdatum
13.07.2018
Verlag
Springer Netherlands
Erschienen in
Water Resources Management / Ausgabe 12/2018
Print ISSN: 0920-4741
Elektronische ISSN: 1573-1650
DOI
https://doi.org/10.1007/s11269-018-2027-0

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