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Thermodynamic performance analysis and optimization of a solar-assisted combined cooling, heating and power system

机译:太阳能辅助冷却,加热和动力系统的热力学性能分析和优化

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This study aims to present a thermodynamic performance analysis and to optimize the configurations of a hybrid combined cooling, heating and power (CCHP) system incorporating solar energy and natural gas. A basic natural gas CCHP system containing a power generation unit, a heat recovery system, an absorption cooling system and a storage tank is integrated with solar photovoltaic (PV) panels and/or a heat collector. Based on thermodynamic modeling, the thermodynamic performance, including energy and exergy efficiencies, under variable work conditions, such as electric load factor, solar irradiance and installation ratio, of the solar PV panels and heat collector is investigated and analyzed. The results of the energy supply side analysis indicate that the integration of solar PV into the CCHP system more efficiently improves the exergy efficiency, whereas the integration of a solar heat collector improves the energy efficiency. To match the building loads, the optimization method combined with the operation strategy is employed to optimize the system configurations to maximize the integrated benefits of energy and economic costs. The optimization results of demand supply matching demonstrate that the integration of a solar heat collector achieves a better integrated performance than the solar PV integration in the specific case study. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究旨在提供热力学性能分析,并优化结合了太阳能和天然气的混合制冷,供暖和发电(CCHP)混合系统的配置。包含发电单元,热回收系统,吸收式冷却系统和储罐的基本天然气CCHP系统与太阳能光伏(PV)面板和/或集热器集成在一起。基于热力学模型,研究和分析了太阳能光伏板和集热器在可变工作条件下的热力学性能,包括能量和火用效率,例如电负载系数,太阳辐照度和安装率。能源供应侧分析的结果表明,将太阳能PV集成到CCHP系统中可以更有效地提高火用效率,而集成太阳能集热器则可以提高能源效率。为了匹配建筑负荷,采用了与运行策略相结合的优化方法来优化系统配置,以最大程度地提高能源和经济成本的综合效益。供需匹配的优化结果表明,在特定案例研究中,太阳能集热器的集成比太阳能光伏集成具有更好的集成性能。 (C)2016 Elsevier Ltd.保留所有权利。

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