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Thermodynamic assessment of modified Organic Rankine Cycle integrated with parabolic trough collector for hydrogen production

机译:改进的有机朗肯循环与抛物线形槽式集热器相结合的热力学评估,用于制氢

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Hydrogen is one of the most clean energy carrier and the best alternative for fossil fuels. In this study, thermodynamic analysis of modified Organic Rankine Cycle (ORC) integrated with Parabolic Trough Collector (PTC) for hydrogen production is investigated. The integrated system investigated in this study consists of a parabolic trough collector, a modified ORC, a single effect absorption cooling system and a PEM electrolyzer. By using parabolic trough collector, solar energy is converted heat energy and then produced heat energy is used in modified ORC to produce electricity. Electricity is then used for hydrogen production. The outputs of this integrated system are electricity, cooling and hydrogen. By performing a parametric study, the effects of design parameters of PTC, modified ORC and PEM electrolyzer on hydrogen production is evaluated. According to the analysis results, solar radiation is one of the most important factor affecting system exergy efficiency and hydrogen production rate. As solar radiation increases from 400 W/m(2) to 1000 W/m(2), exergy efficiency of the system increases 58%-64% and hydrogen production rate increases from 0.1016 kg/h to 0.1028 kg/h.
机译:氢是最清洁的能源载体之一,也是化石燃料的最佳替代品。在这项研究中,研究了与抛物槽收集器(PTC)集成的改进有机朗肯循环(ORC)的热力学分析。在这项研究中研究的集成系统包括一个抛物槽收集器,一个改进的ORC,单效吸收冷却系统和一个PEM电解槽。通过使用抛物槽式集热器,将太阳能转换为热能,然后将产生的热能用于改良的ORC中以发电。然后将电用于制氢。该集成系统的输出是电,冷却和氢气。通过进行参数研究,评估了PTC,改进的ORC和PEM电解槽的设计参数对制氢的影响。根据分析结果,太阳辐射是影响系统能效和产氢率的最重要因素之一。随着太阳辐射从400 W / m(2)增加到1000 W / m(2),系统的火用效率提高58%-64%,制氢率从0.1016 kg / h增加到0.1028 kg / h。

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