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首页> 外文期刊>International journal of hydrogen energy >Effects of various parameters on energy and exergy efficiencies of a solar thermal hydrogen production system
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Effects of various parameters on energy and exergy efficiencies of a solar thermal hydrogen production system

机译:各种参数对太阳热能制氢系统能量和火用效率的影响

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In the present paper, a solar-based thermally-driven hydrogen production system is considered and analyzed thermodynamically, and a performance assessment study of this system is undertaken based on both energy and exergy efficiencies. A case study is also presented to analyse the system performance based on various climatic parameters, for example, intensity of solar radiation, ambient temperature, etc. The effects of such operating conditions and system parameters on the energy and exergy efficiencies of the system are also investigated. The results show that the concentrator performs well with higher solar radiations, concentration factor, absorptivity of absorber surface, reflectivity of reflector surface, with lower heat loss coefficients and area of collector surface. The exergy efficiency of the collector increases with the temperature of the collector surface initially, becomes maximum (36% approximately) at 400 degrees C and then reduces with further increase in temperature. Finally, overall energy and exergy efficiencies of this solar thermal hydrogen system are evaluated and compared for practical applications. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,对太阳能热制氢系统进行了热力学分析,并基于能量和火用效率对系统进行了性能评估研究。还提出了一个案例研究,以基于各种气候参数(例如,太阳辐射强度,环境温度等)来分析系统性能。此类操作条件和系统参数对系统的能量和火用效率的影响也很明显。调查。结果表明,该聚光器在较高的太阳辐射,聚光系数,吸收体表面的吸收率,反射体表面的反射率,较低的热损失系数和集热器表面的面积方面表现良好。收集器的火用效率最初随着收集器表面的温度而增加,在400摄氏度时达到最大值(大约36%),然后随着温度的进一步升高而降低。最后,评估并比较了该太阳能热氢系统的总能量和火用效率,以进行实际应用。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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