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Optimization and analysis of exergy, economic, and environmental of a combined cycle power plant

机译:优化和分析联合循环发电厂的火用,经济和环境

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In this study, a combined cycle power plant with a nominal capacity of 500 MW, including two gas turbine units and one steam turbine unit, is considered by a mathematical model. This study is carried out to optimize three objective functions of exergy efficiency, CO? emission and produced power costs. This multiobjective optimization has been carried out by using the Non-Dominated Sorting Genetic Algorithm (NSGA-II). The results indicate that the efficiency of the combined cycle power plant depends on the design parameters including gas turbine input temperature, compressor pressure ratio, and pinch point temperature. Furthermore, any change occurring in these settings may lead to noticeable changes in objective functions, so that the efficiency of this power plant is increased after optimization by up to 8.12 %, and its heat rate is correspondinglyreduced from 7233 (kJ/kWh) to 7023 (kJ/kWh). Similarly, exergy destruction in the total system shows a reduction by 7.23%.
机译:在这项研究中,通过数学模型考虑了标称容量为500 MW的联合循环发电厂,其中包括两个燃气轮机单元和一个蒸汽轮机单元。进行这项研究以优化三个目标函数,即火用效率CO排放和发电成本。通过使用非支配排序遗传算法(NSGA-II)进行了此多目标优化。结果表明,联合循环发电厂的效率取决于设计参数,包括燃气轮机输入温度,压缩机压力比和收缩点温度。此外,这些设置中发生的任何变化都可能导致目标函数发生显着变化,因此该电厂的优化后效率提高了8.12%,其发热量相应地从7233(kJ / kWh)降低到7023 (kJ / kWh)。同样,整个系统的火用破坏也减少了7.23%。

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