Modeling, transient simulations and parametric studies of parabolic trough collectors with thermal energy storage

Author:

Akba Tufan,Baker Derek,Yazıcıoğlu Almıla Güvenç

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference20 articles.

1. The potential of concentrating solar power (csp) for electricity generation in Libya;Belgasim;Renew. Sustainable Energy Rev.,2018

2. Simulation and assessment of operation strategies for solar thermal power plants with a thermocline storage tank;Biencinto;Sol. Energy,2014

3. Blair, N., DiOrio, N., Freeman, J., Gilman, P., Janzou, S., Neises, T., Wagner, M., 2018. System Advisor Model (SAM) General Description (Version 2017.9.5). Technical report, National Renewable Energy Laboratory, https://www.nrel.gov/docs/fy18osti/70414.pdf.

4. The need to strategically manage csp fleet development and water resources: A structured review and way forward;Duvenhage;Renewable Energy,2019

5. Forristall, R., 2003. Heat transfer analysis and modeling of a parabolic trough solar receiver implemented in engineering equation solver. Technical Report, NREL.

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