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Optimization of combined cooling, heating and power generation by a solar system

机译:通过太阳能系统优化制冷,制热和发电的结合

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In this paper energy, exergy and economic optimization of a combined cooling, heating and power (CCHP) solar generation system equipped with conventional photovoltaic (PV), concentrated photovoltaic/thermal (CPVT), and evacuated tube (ET) collectors is presented. Optimization was performed to achieve the highest values of relative net annual benefit (RNAB) and exergy efficiency as two objectives. Decision or design parameters were the number of CPVT collectors, the number of ET collectors, the number of PV collectors as well as the capacity of batteries and the size of hot water storage tank. Optimum values of design parameters with maximizing objective functions were performed by NSGA-II multi-objective optimization technique. LINMAP method was used to select one optimum point among many others which had constructed the Pareto front curve. The chosen point used only 3 CPVT collectors and specific water storage tank volume without any battery. Sensitivity analysis of effects of changes in fuel and electricity prices as well as equipment investment costs on optimum values of design parameters were also investigated. Finally the equipment selection results for a full CPVT solar energy system connected to the grid and disconnected to the grid (remote area) were also compared and reported. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,介绍了配备了常规光伏(PV),聚光光伏/热能(CPVT)和真空管(ET)收集器的冷热电联产(CCHP)太阳能发电系统的能源,火用和经济优化。进行了优化,以实现相对年净收益(RNAB)和火用效率的最高值,这是两个目标。决定或设计参数是CPVT收集器的数量,ET收集器的数量,PV收集器的数量以及电池的容量和热水储罐的大小。通过NSGA-II多目标优化技术,实现了目标函数最大化的设计参数的最优值。 LINMAP方法被用来在构造帕累托前曲线的许多其他最佳点中选择一个最佳点。选择的点仅使用了3个CPVT收集器和特定的储水箱容积,没有任何电池。还研究了燃料和电价变化以及设备投资成本对设计参数最佳值的影响的敏感性分析。最后,还比较并报告了连接到电网和不连接到电网(远程区域)的完整CPVT太阳能系统的设备选择结果。 (C)2015 Elsevier Ltd.保留所有权利。

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