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Energy, exergy and environmental analysis of a hybrid combined cooling heating and power system integrated with compound parabolic concentrated-photovoltaic thermal solar collectors

机译:结合复合抛物线聚光光伏热太阳能集热器的混合冷却供热混合动力系统的能源,火用和环境分析

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The objective of this paper is to propose and analyze the performance of a novel hybrid combined cooling heating and power (CCHP) system coupled with compound parabolic concentrator-photovoltaic thermal (CPC-PVT) collectors. The electricity and hot water from CPC-PVT are integrated with the electricity and waste heat carried by exhaust gas and jacket water from the internal combustion engine to improve the energy performance. The thermodynamic models were constructed and validated by comparing the simulation results to those from existing studies. The thermodynamic performances were analyzed and the impacts of key parameters on the performances were discussed at the off-design condition. The levelized primary energy saving ratio (PESR) and carbon dioxide emission reduction ratio (CDERR) of the hybrid CCHP system in comparison to the CCHP system without solar energy were employed to evaluate the contribution of solar energy. The results indicated that the energy and exergy efficiencies at the design condition are 63.3% and 21.8% in summer, respectively, and 61.8% and 27.1% in winter, respectively. Compared to the CCHP system without solar energy, the hybrid system has more flexible ability to adjust the heating to electricity ratio and achieves the maximum levelized PESR of 28.6% and CDERR of 36.7%, respectively. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文的目的是提出并分析一种新型的混合热电联产(CCHP)混合抛物线聚光器-光伏热(CPC-PVT)集热器的性能。 CPC-PVT的电力和热水与内燃机废气和夹套水携带的电力和废热结合在一起,以提高能源效率。通过将模拟结果与现有研究结果进行比较,构建并验证了热力学模型。分析了热力学性能,并讨论了非设计条件下关键参数对性能的影响。与没有太阳能的CCHP系统相比,采用混合CCHP系统的平均一次节能比(PESR)和二氧化碳减排比(CDERR)来评估太阳能的贡献。结果表明,在设计条件下,夏季的能效和火用效率分别为63.3%和21.8%,冬季分别为61.8%和27.1%。与不带太阳能的CCHP系统相比,混合动力系统具有更灵活的调节电热比的能力,最大平整PESR分别为28.6%和CDERR为36.7%。 (C)2019 Elsevier Ltd.保留所有权利。

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