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首页> 外文期刊>International journal of hydrogen energy >Introducing an integrated SOFC, linear Fresnel solar field, Stirling engine and steam turbine combined cooling, heating and power process
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Introducing an integrated SOFC, linear Fresnel solar field, Stirling engine and steam turbine combined cooling, heating and power process

机译:引入集成的SOFC,线性菲涅尔太阳能场,斯特林发动机和蒸汽轮机,将冷却,加热和动力过程相结合

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摘要

A new integrated combined cooling, heating and power system which includes a solid oxide fuel cell, Stirling engine, steam turbine, linear Fresnel solar field and double effect absorption chiller is introduced and investigated from energy, exergy and thermodynamic viewpoints. In this process, produced electrical power by the fuel cell and steam turbines is 6971.8 kW. Stirling engine uses fuel cell waste heat and produces 656 kW power. In addition, absorption chiller is driven by waste heat of the Stirling engine and generates 2118.8 kW of cooling load. Linear Fresnel solar field produces 961.7 kW of thermal power as a heat exchanger. The results indicate that, electrical, energy and exergy efficiencies and total exergy destruction of the proposed system are 49.7%, 67.5%, 55.6% and 12560 kW, respectively. Finally, sensitivity analysis to investigate effect of the different parameters such as flow rate of inputs, outlet pressure of the components and temperature changes of the solar system on the hybrid system performance is also done. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:引入并研究了一种新的集成式综合制冷,供暖和动力系统,该系统包括固体氧化物燃料电池,斯特林发动机,汽轮机,线性菲涅尔太阳能场和双效吸收式制冷机,并从能源,火用和热力学角度进行了研究。在此过程中,燃料电池和蒸汽轮机产生的电能为6971.8 kW。斯特林发动机利用燃料电池废热产生656千瓦的功率。此外,吸收式制冷机由斯特林发动机的废热驱动,并产生2118.8 kW的冷却负荷。线性菲涅尔太阳能场产生961.7 kW的热能作为热交换器。结果表明,拟议系统的电,能和火用效率分别为49.7%,67.5%,55.6%和12560 kW。最后,还进行了敏感性分析,以研究不同参数(例如输入流量,组件的出口压力和太阳能系统的温度变化)对混合动力系统性能的影响。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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