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Thermodynamic analysis and assessment of a novel integrated geothermal energy-based system for hydrogen production and storage

机译:新型集成的基于地热能的氢气生产和存储系统的热力学分析和评估

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In this paper, thermodynamic analysis and assessment of a novel geothermal energy based integrated system for power, hydrogen, oxygen, cooling, heat and hot water production are performed. This integrated process consists of (a) geothermal subsystem, (b) Kalina cycle, (c) single effect absorption cooling subsystem and (d) hydrogen generation and storage subsystems. The impacts of some design parameters, such as absorption chiller evaporator temperature, geothermal source temperature, turbine input pressure and pinch point temperature on the integrated system performance are investigated to achieve more efficient and more effective. Also, the impacts of reference temperature and geothermal water temperature on the integrated system performance are studied in detail. The energetic and exergetic efficiencies of the integrated system are then calculated as 42.59% and 48.24%, respectively. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,对基于新型地热能的电力,氢,氧,冷却,热和热水生产集成系统进行了热力学分析和评估。该集成过程包括(a)地热子系统,(b)卡利纳循环,(c)单效吸收冷却子系统和(d)氢气产生和存储子系统。研究了一些设计参数(例如吸收式制冷机蒸发器温度,地热源温度,涡轮机输入压力和夹点温度)对集成系统性能的影响,以实现更高的效率和效果。此外,还详细研究了参考温度和地热水温度对集成系统性能的影响。然后计算出集成系统的能量效率和能量效率分别为42.59%和48.24%。 (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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