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Fluid selection optimization of a combined cooling, heating and power (CCHP) system for residential applications

机译:住宅应用中冷热电联产(CCHP)系统的流体选择优化

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This research paper mainly deals with a comprehensive techno-economic modeling and multi objective optimization of a CCHP system for residential application. An internal combustion engine (ICE) proposed as the prime power and a combined organic Rankine cycle (ORC), ejector refrigeration cycle (ERC), and domestic water heater (DWH) is considered to recover the wasted heat from the ICE through exhaust gas and water jacket. Their common working fluids namely R-134a, R-600, R-123, and R-11 are selected in this study. A comprehensive multi-objective optimization is applied to determine the optimal design parameters of the system. Two major objective functions, exergy efficiency that should be maximized and total cost rate of the system to be minimized are considered while satisfying several reasonable constraints. The total cost rate as an objective function consists of purchase equipment costs, fuel cost, and environmental impact cost. Diesel engine capacity, diesel engine part load, expander inlet pressure, expander extraction pressure, extraction ratio, condenser pressure, and evaporator pressure are selected as decision variables. A developed multi-objective genetic algorithm is used as an optimization tool with ability of better optimal results with less computer running time. It is observed that R-11 working fluid is a good candidate from both exergy efficiency and total cost rate point of view. To examine the effect of each decision variable on objective functions, a sensitivity analysis is performed. Finally, the ability of the system is studied to meet the cooling, heating, and electricity demand of a detached house with a defined load in Tehran. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文主要研究住宅应用CCHP系统的综合技术经济模型和多目标优化。提议将内燃机(ICE)用作主要动力,并将有机朗肯循环(ORC),喷射器制冷循环(ERC)和家用热水器(DWH)组合使用,以通过排气和废气回收ICE中的废热。水套。在本研究中选择了它们的常见工作流体,即R-134a,R-600,R-123和R-11。应用全面的多目标优化来确定系统的最佳设计参数。在满足几个合理约束的同时,考虑了两个主要目标函数:应最大化的火用效率和要最小化的系统总成本率。总成本率作为目标函数,包括购买设备成本,燃料成本和环境影响成本。选择柴油机容量,柴油机部分负荷,膨胀机入口压力,膨胀机抽气压力,抽气比,冷凝器压力和蒸发器压力作为决策变量。改进的多目标遗传算法被用作一种优化工具,能够以更少的计算机运行时间获得更好的最佳结果。从火用效率和总成本率的角度来看,可以观察到R-11工作液是很好的选择。为了检查每个决策变量对目标函数的影响,执行了敏感性分析。最后,研究了该系统满足德黑兰指定负荷的独立式住宅的制冷,供暖和电力需求的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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