On optimized solar-pond-driven irreversible heat engines
Author:
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference5 articles.
1. Determination of the optimum pond temperature for maximizing power production of a convecting solar-pond thermal-energy conversion system;Kamiuto;Applied Energy,1987
2. Optimum pond temperature for maximizing power production of a non-convecting solar-pond heat conversion system;Kamiuto;Applied Energy,1988
3. Efficiency of a Carnot engine at maximum power output;Curzon;Am. J. Phys.,1975
4. The steady-state salt gradient solar pond;Kooi;Solar Energy,1979
5. The maximum power output and maximum efficiency of an irreversible Carnot heat engine;Chen;J. Phys. D: Appl. Phys.,1994
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1. Evolution and novel accomplishments of solar pond, desalination and pond coupled to desalination systems: a review;Journal of Thermal Analysis and Calorimetry;2021-02-25
2. Optimum performance characteristics of an irreversible solar-driven Brayton heat engine at the maximum overall efficiency;Renewable Energy;2007-04
3. Performance characteristics of an irreversible solar-driven Braysson heat engine at maximum efficiency;Renewable Energy;2005-04
4. Optimum performance of an irreversible solar-driven cogeneration heat pump system;Energy Conversion and Management;2001-02
5. Second law analysis of irreversible heat engines with variable temperature heat reservoirs;Energy Conversion and Management;2001-01
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