Exergy analysis of two phase change materials storage system for solar thermal power with finite-time thermodynamics
Author:
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference23 articles.
1. State of the art on high temperature thermal energy storage for power generation, Part 2-Case studies;Medrano;Renewable and Sustainable Energy Reviews,2010
2. State of the art on high temperature thermal energy storage for power generation. Part 1-Concepts, materials and modellization;Gil;Renewable and Sustainable Energy Reviews,2010
3. Experimental investigation on a combined sensible and latent heat storage system integrated with constant/varying solar heat sources;Nallusamy;Renewable Energy,2007
4. Numerical analysis of latent heat thermal energy storage system;Vyshak;Energy Conversion and Management,2007
5. Review of mathematical modeling on latent heat thermal energy storage systems using phase-change material;Verma;Renewable and Sustainable Energy Reviews,2008
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