Performance Optimization of a Solar-Driven Multi-Step Irreversible Brayton Cycle Based on a Multi-Objective Genetic Algorithm

  • Ahmadi M
  • Ahmadi M
  • Feidt M
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Abstract

© M.H. Ahmadi et al., published by IFP Energies nouvelles, 2014. An applicable approach for a multi-step regenerative irreversible Brayton cycle on the basis of thermodynamics and optimization of thermal efficiency and normalized outpuzt power is presented in this work. In the present study, thermodynamic analysis and a NSGA II algorithm are coupled to determine the optimum values of thermal efficiency and normalized power output for a Brayton cycle system. Moreover, three well-known decision-making methods are employed to indicate definite answers from the outputs gained from the aforementioned approach. Finally, with the aim of error analysis, the values of the average and maximum error of the results are also calculated.

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APA

Ahmadi, M. H., Ahmadi, M. A., & Feidt, M. (2016). Performance Optimization of a Solar-Driven Multi-Step Irreversible Brayton Cycle Based on a Multi-Objective Genetic Algorithm. Oil & Gas Science and Technology – Revue d’IFP Energies Nouvelles, 71(1), 16. https://doi.org/10.2516/ogst/2014028

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