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Thermodynamic analyses of a solar-based combined cycle integrated with electrolyzer for hydrogen production

机译:集成电解池的太阳能联合循环的热力学分析

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In the current study, a combined steam and gas turbine system integrated with solar system is studied thermodynamically. In addition, an electrolyzer is added to the integrated system for hydrogen production which makes the current system more environmental friendly and sustainable. This system is then evaluated by employing thermodynamic analysis to obtain both energetic and exergetic efficiencies. The parametric studies are also conducted to investigate the effects of varying operating conditions and state properties on both energy and exergy efficiencies. The present results show that while gas turbine can generate 312 MW directly, 151.72 MW power is generated by steam turbine using solar collectors and exhausted gases recovered from the gas turbine. Furthermore, by adding electrolyzer to the integrated system, a total of 131.3 g/s (472.68 kg/h) hydrogen is generated by using excess electricity which leads to more sustainability system. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在当前的研究中,热力学研究了结合了太阳能系统的蒸汽和燃气轮机联合系统。另外,电解器被添加到用于制氢的集成系统中,这使得当前系统更加环保和可持续。然后通过采用热力学分析来评估该系统以获得能量效率和能量效率。还进行了参数研究,以研究变化的运行条件和状态特性对能量和火用效率的影响。目前的结果表明,尽管燃气轮机可以直接产生312兆瓦,但蒸汽轮机利用太阳能收集器和从燃气轮机中回收的废气产生了151.72兆瓦的电力。此外,通过将电解槽添加到集成系统中,通过使用过量的电能可产生总计131.3 g / s(472.68 kg / h)的氢气,从而带来更多的可持续性系统。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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