Analysis of a hybrid dry cooling system for solar thermal electricity plants in deserts

Author:

Biencinto Mario,Rojas Esther,Bayón Rocío

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Energy Engineering and Power Technology

Reference50 articles.

1. SolarPACES, CSP Projects around the world, SolarPACES-Solar Power and Chemical Energy Systems. IEA Technology Collaboration Programme. Available from: http://www.solarpaces.org/csp-technologies/csp-projects-around-the-world/, 2020 [accessed 2 January 2020].

2. N. Bracken, J. Macknick, A. Tovar-Hastings, P. Komor, M. Gerritsen, S. Mehta. Concentrating Solar Power and Water Issues in the US Southwest. NREL Technical Report NREL/TP-6A50-61376, Contract No. DE-AC36-08GO28308. Joint Institute for Strategical Energy Analysis, USA. 2015.

3. C.S. Turchi, M.J. Wagner, C.F. Kutscher. Water Use in Parabolic Trough Power Plants: Summary Results from WorleyParsons' Analyses. NREL Technical Report NREL/TP-5500-49468, Contract No. DE-AC36-08GO28308. National Renewable Energy Laboratory, USA. 2010.

4. Prospects and problems of concentrating solar power technologies for power generation in the desert regions;Xu;Renew. Sustain. Energy Rev.,2016

5. A. Poullikkas, G. Kourtis, I. Hadjipaschalis. An overview of CSP cooling systems. In: I. Michaelides, E. Charalambides, editors. Proceedings of the 3rd International Conference on Renewable Energy Sources and Energy Efficiency. 19 – 20 May 2011, Nicosia, Cyprus. ISBN978-9963-567-02-7.

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