Optimum performance characteristics of an irreversible solar-driven Brayton heat engine at the maximum overall efficiency
Author:
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference33 articles.
1. Performance optimization of a solar driven heat engine with finite-rate heat transfer;Sogut;Renew Energy,2005
2. Exergetic analysis of a solar thermal power system;Singh;Renew Energy,2000
3. On optimized solar-pond-driven irreversible heat engines;Goktun;Renew Energy,1996
4. Wind energy as a solar-driven heat engine: a thermodynamic approach;Gordon;Am J Phys,1989
5. Equivalent combined systems of three-heat sources heat pumps;Chen;J Chem Phys,1989
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