Dry cooling with night cool storage to enhance solar power plants performance in extreme conditions areas
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DOI: 10.1016/j.apenergy.2011.11.030
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Cited by:
- Boukelia, T.E. & Bouraoui, A. & Laouafi, A. & Djimli, S. & Kabar, Y., 2020. "3E (Energy-Exergy-Economic) comparative study of integrating wet and dry cooling systems in solar tower power plants," Energy, Elsevier, vol. 200(C).
- Tarun Kumar Aseri & Chandan Sharma & Tara C. Kandpal, 2022. "Condenser cooling technologies for concentrating solar power plants: a review," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(4), pages 4511-4565, April.
- Sławomir Rabczak & Krzysztof Nowak, 2022. "Possibilities of Adapting a Free-Cooling System in an Existing Commercial Building," Energies, MDPI, vol. 15(9), pages 1-10, May.
- Chiu, Justin N.W. & Gravoille, Pauline & Martin, Viktoria, 2013. "Active free cooling optimization with thermal energy storage in Stockholm," Applied Energy, Elsevier, vol. 109(C), pages 523-529.
- Dyreson, Ana & Miller, Franklin, 2016. "Night sky cooling for concentrating solar power plants," Applied Energy, Elsevier, vol. 180(C), pages 276-286.
- Wu, Yunna & Geng, Shuai & Zhang, Haobo & Gao, Min, 2014. "Decision framework of solar thermal power plant site selection based on linguistic Choquet operator," Applied Energy, Elsevier, vol. 136(C), pages 303-311.
- Sait, Hani H. & Martinez-Val, Jose M. & Abbas, Ruben & Munoz-Anton, Javier, 2015. "Fresnel-based modular solar fields for performance/cost optimization in solar thermal power plants: A comparison with parabolic trough collectors," Applied Energy, Elsevier, vol. 141(C), pages 175-189.
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Keywords
Storage; Solar; Chiller; Rankine;All these keywords.
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