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首页> 外文期刊>International journal of hydrogen energy >Comprehensive analysis and multi-objective optimization of a power and hydrogen production system based on a combination of flash-binary geothermal and PEM electrolyzer
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Comprehensive analysis and multi-objective optimization of a power and hydrogen production system based on a combination of flash-binary geothermal and PEM electrolyzer

机译:基于闪蒸 - 二元地热和PEM电解槽组合的电力和氢气生产系统的综合分析与多目标优化

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In this study, comprehensive energy, exergy, and economic modeling, and optimization of a flash-binary geothermal system, were carried out for power and hydrogen production. The binary system is a combination of a dual-pressure organic Rankine cycle and proton exchange membrane electrolyzer. For performance improvement of dual-pressure organic Rankine cycle, zeotropic mixtures were used as the working fluids. The multi-objective Genetic algorithm was employed to optimize the system performance. According to the obtained results, the highest rate of exergy destruction was obtained for the steam turbine with a value of 16.42 kW. For the base case simulation, the energy and exergy efficiencies of the proposed system were obtained by 16.66% and 58.03%, respectively; also, the generated power, overall exergy destruction, and hydrogen production capacity were calculated by 114.53 kW, 82.755 kW, and 0.306 kg.hr(-1), respectively. For the multi-objective optimization mode, the best performance was calculated for Pentane (0.467)/Butane (0.533) with energy and exergy efficiencies and hydrogen production of 16.67%, 58.14%, and 0.37 kg.hr(-1). Moreover, the optimized payback period and NPV were around 5.52 years and 402600 $, respectively. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本研究中,为电力和氢气产生进行了全面的能源,高度和经济建模和闪光二进制地热系统的优化。二元系统是双压有机朗肯循环和质子交换膜电解槽的组合。为了改善双压力有机兰序循环,使用鸟类混合物作为工作流体。采用多目标遗传算法优化系统性能。根据所得的结果,为蒸汽轮机获得的最高漏极破坏率,其值为16.42 kW。对于基础案例模拟,所提出的系统的能量和漏极效率分别获得16.66%和58.03%;此外,产生的功率,总体驱动性破坏和氢气产能分别由114.53 kW,82.755 kW和0.306 kg.hr(-1)计算。对于多目标优化模式,对戊烷(0.467)/丁烷(0.533)计算的最佳性能,能量和漏洞效率,氢产量为16.67%,58.14%和0.37 kg.hr(-1)。此外,优化的投资回收期和NPV分别为5.52岁至402600美元。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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