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Identifying high potential locations for run-of-the-river hydroelectric power plants using GIS and digital elevation models

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  • Zaidi, Arjumand Z.
  • Khan, Majid

Abstract

The recent global energy crisis has provoked a need to explore alternate energy sources including run-of-the-river hydropower projects. To derive maximum payback for a given investment, finding the most advantageous siting of power plants is imperative. If a selection of potential sites misses some of the apparently indistinct sites with significant power potential, there is a chance of acquiring only partial benefits out of these investments. A review of the existing methods for evaluating power potential of a river is discussed in this paper with their limitations along with a new proposed approach. The new approach can be used to evaluate different installation schemes along a river to assess run-of-the-river hydropower potentials using geospatial data techniques to select sites exhibiting higher total hydropower potential. The case study of Kunhar River, located in the northern part of Pakistan, presents the applicability of the approach. Open source Advanced Spaceborne Thermal Emission (ASTER)’s digital elevation model (DEM) and regional hydrologic gauged data are used for identifying the best locations for hydropower plants, demonstrating this approach is substantially more cost effective and robust compared to other field based assessment. Replicating the proposed approach for other locations is easy following the step-by-step method presented in this paper and giving consideration to the limitations described. This study may provide guidelines for the development of cost-effective and energy efficient hydropower projects. The use of this approach is most advantageous in the preliminary assessment phase of a project to narrow the scope of the detailed study focusing only on the higher potential sites.

Suggested Citation

  • Zaidi, Arjumand Z. & Khan, Majid, 2018. "Identifying high potential locations for run-of-the-river hydroelectric power plants using GIS and digital elevation models," Renewable and Sustainable Energy Reviews, Elsevier, vol. 89(C), pages 106-116.
  • Handle: RePEc:eee:rensus:v:89:y:2018:i:c:p:106-116
    DOI: 10.1016/j.rser.2018.02.025
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    1. Larentis, Dante G. & Collischonn, Walter & Olivera, Francisco & Tucci, Carlos E.M., 2010. "Gis-based procedures for hydropower potential spotting," Energy, Elsevier, vol. 35(10), pages 4237-4243.
    2. Palomino Cuya, Daly Grace & Brandimarte, Luigia & Popescu, Ioana & Alterach, Julio & Peviani, Maximo, 2013. "A GIS-based assessment of maximum potential hydropower production in La Plata basin under global changes," Renewable Energy, Elsevier, vol. 50(C), pages 103-114.
    3. Darmawi, & Sipahutar, Riman & Bernas, Siti Masreah & Imanuddin, Momon Sodik, 2013. "Renewable energy and hydropower utilization tendency worldwide," Renewable and Sustainable Energy Reviews, Elsevier, vol. 17(C), pages 213-215.
    4. Belmonte, S. & Núñez, V. & Viramonte, J.G. & Franco, J., 2009. "Potential renewable energy resources of the Lerma Valley, Salta, Argentina for its strategic territorial planning," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(6-7), pages 1475-1484, August.
    5. Yi, Choong-Sung & Lee, Jin-Hee & Shim, Myung-Pil, 2010. "Site location analysis for small hydropower using geo-spatial information system," Renewable Energy, Elsevier, vol. 35(4), pages 852-861.
    6. Huang, Hailun & Yan, Zheng, 2009. "Present situation and future prospect of hydropower in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(6-7), pages 1652-1656, August.
    7. Kusre, B.C. & Baruah, D.C. & Bordoloi, P.K. & Patra, S.C., 2010. "Assessment of hydropower potential using GIS and hydrological modeling technique in Kopili River basin in Assam (India)," Applied Energy, Elsevier, vol. 87(1), pages 298-309, January.
    8. Bartle, Alison, 2002. "Hydropower potential and development activities," Energy Policy, Elsevier, vol. 30(14), pages 1231-1239, November.
    9. Rojanamon, Pannathat & Chaisomphob, Taweep & Bureekul, Thawilwadee, 2009. "Application of geographical information system to site selection of small run-of-river hydropower project by considering engineering/economic/environmental criteria and social impact," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(9), pages 2336-2348, December.
    10. Ferreira, Jacson Hudson Inácio & Camacho, José Roberto & Malagoli, Juliana Almansa & Júnior, Sebastião Camargo Guimarães, 2016. "Assessment of the potential of small hydropower development in Brazil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 56(C), pages 380-387.
    11. Dudhani, Surekha & Sinha, A.K. & Inamdar, S.S., 2006. "Assessment of small hydropower potential using remote sensing data for sustainable development in India," Energy Policy, Elsevier, vol. 34(17), pages 3195-3205, November.
    12. Bayazıt, Yıldırım & Bakış, Recep & Koç, Cengiz, 2017. "An investigation of small scale hydropower plants using the geographic information system," Renewable and Sustainable Energy Reviews, Elsevier, vol. 67(C), pages 289-294.
    13. Balat, Havva, 2007. "A renewable perspective for sustainable energy development in Turkey: The case of small hydropower plants," Renewable and Sustainable Energy Reviews, Elsevier, vol. 11(9), pages 2152-2165, December.
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    2. Haseeb Akbar & Pariyapat Nilsalab & Thapat Silalertruksa & Shabbir H. Gheewala, 2023. "The Effect of Climate Change on the Hydropower Potential in the Kunhar River Watershed, Pakistan," World, MDPI, vol. 4(4), pages 1-19, November.
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