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A new solar and geothermal based integrated ammonia fuel cell system for multigeneration

机译:一种用于多粒组织的新型太阳能和地热集成氨燃料电池系统

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In this study, a new solar and geothermal based integrated system is developed for multigeneration of electricity, fresh water, hydrogen and cooling. The system also entails a solar integrated ammonia fuel cell subsystem. Furthermore, a reverse osmosis desalination system is used for fresh water production and a proton exchange membrane based hydrogen production system is employed. Moreover, an absorption cooling system is utilized for district cooling via available system waste heat. The system designed is assessed thermodynamically through approaches of energy and exergy analyses. The overall energy efficiency is determined to be 42.3%. Also, the overall exergy efficiency is assessed, and it is found to be 21.3%. The exergy destruction rates in system components are also analysed and the absorption cooling system generator as well as geothermal flash chamber are found to have comparatively higher exergy destruction rates of 2370.2 kW and 643.3 kW, respectively. In addition, the effects of varying system parameters on the system performance are studied through a parametric analyses of the overall system and associated subsystems. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一种新的太阳能和地热综合体系,用于多粒,淡水,氢气和冷却。该系统还需要太阳能集成氨燃料电池子系统。此外,使用反渗透脱盐系统用于淡水生产,采用质子交换膜基氢气生产系统。此外,吸收冷却系统通过可用的系统废热使用区域冷却。通过能量和漏洞分析的方法进行热力学评估系统。整体能量效率确定为42.3%。此外,评估了整体漏洞效率,发现它是21.3%。还分析了系统组件中的漏洞破坏率,并且发现吸收冷却系统发生器以及地热闪光室分别具有2370.2kW和643.3千瓦的相对较高的漏洞破坏率。此外,通过整个系统和相关子系统的参数分析研究了不同系统参数对系统性能的影响。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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