Performance Assessment of Seawater, Wet and Dry Cooling in a 50-MW Parabolic Trough Collectors Concentrated Solar Power Plant in Kuwait

Author:

Sorbet Fco. Javier1,Fernandez-Peruchena Carlos2,Zaversky Fritz2,Chakroun Walid3,Alotaibi Sorour A.3,Ahmed Mansour4,Sanchez Marcelino5,García-Barberena Javier5

Affiliation:

1. Department of Solar Energy, Technologies & Storage, CENER (National Renewable Energy, Centre of Spain), C/Ciudad de la Innovación 7, 31621 Sarriguren, Spain

2. Department of Solar Energy, Technologies & Storage, CENER (National Renewable Energy, Centre of Spain), C/ Ciudad de la Innovación 7, 31621 Sarriguren, Spain

3. Department of Mechanical Engineering, College of Engineering & Petroleum, Kuwait University, Khaldiya, P.O. Box 5969, Safat, Kuwait City 13060, Kuwait

4. Water Research Center, Kuwait Institute for Scientific Research, P.O. Box 24885, Safat, Kuwait City 13109, Kuwait

5. Department of Solar Energy, Technologies & Storage, CENER (National Renewable Energy, Centre of Spain). C/Ciudad de la Innovación 7, 31621 Sarriguren, Spain

Abstract

Abstract Kuwait is a country with great potential for concentrated solar power (CSP) due to its high solar resource. The current work analyzes the potential of the application of CSP technology in the country and its particularities. Specifically, the current work examines a CSP plant with parabolic trough collector (PTC) technology and how this technology is affected in its performance depending on the location (inland or coastal) and the refrigeration system (wet, dry, or seawater cooled). The modeling methodology is based on a two-step approach: first, the Rankine steam power cycle is modeled in detail in a state-of-the-art steady-state simulation environment, obtaining the performance of the power cycle for each cooling technology; second, the power cycle performance maps are integrated into a detailed transient system-level simulation model of the complete CSP plant in order to perform annual yield simulations for the different representative locations of the climate of Kuwait. These results provide valuable information on both the potential of this technology for its more immediate application such as electricity generation and other future applications such as the desalination of seawater where the location must necessarily be coastal.

Funder

Kuwait Foundation for the Advancement of Sciences

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference35 articles.

1. Renewable Capacity Statistics 2021;International Renewable Energy Agency (IRENA),2021

2. Renewable Energy in the Water, Energy & Food Nexus;International Renewable Energy Agency (IRENA),2015

3. Techno-economics of Cogeneration Approaches for Combined Power and Desalination From Concentrated Solar Power;Gunawan;ASME J. Sol. Energy Eng.,2019

4. Concentrating Solar Power and Desalination Plants

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