首页> 外文期刊>International journal of hydrogen energy >An innovative compressed air energy storage (CAES) using hydrogen energy integrated with geothermal and solar energy technologies: A comprehensive techno-economic analysis-different climate areas- using artificial intelligent (AI)
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An innovative compressed air energy storage (CAES) using hydrogen energy integrated with geothermal and solar energy technologies: A comprehensive techno-economic analysis-different climate areas- using artificial intelligent (AI)

机译:使用氢能与地热和太阳能技术相结合的创新压缩空气储能 (CAES):使用人工智能 (AI) 进行全面的技术经济分析-不同气候区域

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摘要

The present study evaluates the optimal design of a renewable system based on solar and geothermal energy for power generation and cooling based on a solar cycle with thermal energy storage and an electrolyzer to produce hydrogen fuel for the combustion chamber. The subsystems include solar collectors, gas turbines, an electrolyzer, an absorption chiller, and compressed air energy storage. The solar collector surface area, geothermal source temperature, steam turbine input pressure, and evaporator input temperature were found to be major determinants. The economic analysis of the system showed that the solar subsystem, steam Rankine cycle, and compressed air energy storage accounted for the largest portions of the cost rate. The exergy analysis of the system demonstrated that the solar subsystem and SRC had the highest contributions to total exergy destruction. A comparative case study was conducted on Isfahan, Bandar Abbas, Mashhad, Semnan, and Zanjan in Iran to evaluate the performance of the proposed system at different ambient temperatures and irradiance levels during the year. To optimize the system and find the optimal objective functions, the NSGA-II algorithm was employed. The contradictory objective functions of the system included exergy efficiency maximization and cost rate minimization. The optimal Exergy round trip efficiency and cost rate were found to be 29.25 and 714.25 ($/h), respectively. (c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究评估了基于太阳能和地热能的可再生能源系统的优化设计,该系统基于太阳能循环,具有热能存储和电解槽,为燃烧室生产氢燃料。这些子系统包括太阳能集热器、燃气轮机、电解槽、吸收式冷却器和压缩空气储能装置。太阳能集热器表面积、地热源温度、汽轮机输入压力和蒸发器输入温度是主要决定因素。该系统的经济性分析表明,太阳能子系统、蒸汽朗肯循环和压缩空气储能占成本率的最大部分。对该系统的辐射分析表明,太阳亚系统和SRC对总辐射破坏的贡献最大。对伊朗的伊斯法罕、阿巴斯港、马什哈德、塞姆南和赞詹进行了比较案例研究,以评估拟议系统在年内不同环境温度和辐照度水平下的性能。为了优化系统并找到最优目标函数,采用了NSGA-II算法。该系统的目标函数相互矛盾,包括效率最大化和成本率最小化。最佳的 Exergy 往返效率和成本率分别为 29.25% 和 714.25 ($/h)。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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