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Potential of solar energy development for water pumping in Jordan

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  • Hrayshat, Eyad S.
  • Al-Soud, Mohammed S.

Abstract

The potential of solar energy development for water pumping in Jordan was studied. For this purpose, 10 sites were selected based on the available solar radiation data. According to the annual amount of water output, the selected sites can be divided into three different categories: the first one, which includes Taffieleh, Queira, H-4, and H-5, is considered to be “adequate” for solar water pumping. Their annual amount of water output forms about 62% of all water pumped from all the 10 sites combined. Among the four sites included in this first category, Taffieleh has the highest potential. Not only can the most annual amount of water pumped be obtained from this location, but also the largest monthly amount of water—except for the month of March—during the year. Furthermore, about 51% of the annual amount of water pumped at Taffieleh is during the summer months (May–September), when the water consumption is the highest and water pumping is a necessity. The second category, which includes Ras Muneef, Mafraq, and Hasa, is considered to be “promising”. Its water output adds up to about 29% of all water pumped from all sites. The third category, including Deir Alla, Baqura, and Wadi Yabis, is considered to be “poor”. Only about 9% of the water pumped from all sites combined can be obtained from these three locations.

Suggested Citation

  • Hrayshat, Eyad S. & Al-Soud, Mohammed S., 2004. "Potential of solar energy development for water pumping in Jordan," Renewable Energy, Elsevier, vol. 29(8), pages 1393-1399.
  • Handle: RePEc:eee:renene:v:29:y:2004:i:8:p:1393-1399
    DOI: 10.1016/j.renene.2003.12.016
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    References listed on IDEAS

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    1. Mohsen, Mousa S. & Akash, Bilal A., 1998. "Potentials of wind energy development for water pumping in Jordan," Renewable Energy, Elsevier, vol. 14(1), pages 441-446.
    2. Jibril, Ziad, 1991. "Estimation of solar radiation over Jordan—predicted tables," Renewable Energy, Elsevier, vol. 1(2), pages 277-291.
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    1. Al-Smairan, Mohammad, 2012. "Application of photovoltaic array for pumping water as an alternative to diesel engines in Jordan Badia, Tall Hassan station: Case study," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(7), pages 4500-4507.
    2. Boutelhig, A. & Bakelli, Y. & Hadj Mahammed, I. & Hadj Arab, A., 2012. "Performances study of different PV powered DC pump configurations for an optimum energy rating at different heads under the outdoor conditions of a desert area," Energy, Elsevier, vol. 39(1), pages 33-39.
    3. Gopal, C. & Mohanraj, M. & Chandramohan, P. & Chandrasekar, P., 2013. "Renewable energy source water pumping systems—A literature review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 25(C), pages 351-370.
    4. Yaichi, Mohammed & Fellah, Mohammed-Karim & Tayebi, Azzedinne & Boutadara, Abdelkader, 2019. "A fast and simplified method using non-linear translation of operating points for PV modules energy output and daily pumped water to predict the performance of a stand-alone photovoltaic pumping syste," Renewable Energy, Elsevier, vol. 133(C), pages 248-260.
    5. Aliyu, Mansur & Hassan, Ghassan & Said, Syed A. & Siddiqui, Muhammad U. & Alawami, Ali T. & Elamin, Ibrahim M., 2018. "A review of solar-powered water pumping systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 87(C), pages 61-76.
    6. Imad H. Ibrik, 2020. "Techno-economic Feasibility of Energy Supply of Water Pumping in Palestine by Photovoltaic-systems, Diesel Generators and Electric Grid," International Journal of Energy Economics and Policy, Econjournals, vol. 10(3), pages 69-75.
    7. Abdelrahman Azzuni & Arman Aghahosseini & Manish Ram & Dmitrii Bogdanov & Upeksha Caldera & Christian Breyer, 2020. "Energy Security Analysis for a 100% Renewable Energy Transition in Jordan by 2050," Sustainability, MDPI, vol. 12(12), pages 1-26, June.
    8. Chandel, S.S. & Nagaraju Naik, M. & Chandel, Rahul, 2015. "Review of solar photovoltaic water pumping system technology for irrigation and community drinking water supplies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 49(C), pages 1084-1099.
    9. Mahmoud Zeidan & Mohammed Al-soud & Mothana Dmour & Zuhier Alakayleh & Safwan Al-qawabah, 2023. "Integrating a Solar PV System with Pumped Hydroelectric Storage at the Mutah University of Jordan," Energies, MDPI, vol. 16(15), pages 1-14, August.
    10. Aagreh, Yaser & Al-Ghzawi, Audai, 2013. "Feasibility of utilizing renewable energy systems for a small hotel in Ajloun city, Jordan," Applied Energy, Elsevier, vol. 103(C), pages 25-31.
    11. Hrayshat, Eyad S., 2008. "Brackish water desalination by a stand alone reverse osmosis desalination unit powered by photovoltaic solar energy," Renewable Energy, Elsevier, vol. 33(8), pages 1784-1790.
    12. Hrayshat, Eyad S., 2007. "Wind resource assessment of the Jordanian southern region," Renewable Energy, Elsevier, vol. 32(11), pages 1948-1960.
    13. Hrayshat, Eyad S., 2009. "Viability of solar photovoltaics as an electricity generation source for Jordan," Renewable Energy, Elsevier, vol. 34(10), pages 2133-2140.

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