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Exergetic, ecological and thermo-economic (3E) optimization of an absorption heat pump with heat resistance, heat leakage and two internal irreversibilities: Comparison

机译:耐热,散热,散热和两个内部不缩义的吸收热泵优化,生态和热经济(3E)优化:比较

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摘要

The multi-objective optimization of a three-heat-reservoir absorption heat pump (THR AHP) is used mainly considering three objective functions: exergetic performance criterion (EPC), exergy-based ecological criterion (E) and thermo-economic criterion (F). Indeed, the exergy, ecological and thermo-economic criteria are highlighted analytically. This is done by using the law of convective heat exchanges between the working fluid and the different components and finite time thermodynamics analysis. This is to determine the optimum operating points of the system by minimizing exergy destruction rate, the environmental impact and the costs of capital and energy consumed. Also, the parameters taken into account influencing the performance of the absorption heat pump are the heat resistances, the heat leakages, the thermo-economic parameter and the two internal irreversibility factors in particular that between the evaporator-condenser assembly. However, the Flowchart optimization methodology made it possible to deduce that the system presents a significant advantage at the maxima of the F and the EPC-criteria in terms of coefficient of performance. Nevertheless, the THR AHP presents a significant advantage at the maximum of the EPC in terms of exergy destruction rate and at the maximum of the E in terms of specific heating load and exergy output rate. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:三热储层吸收热泵(Thr AHP)的多目标优化主要考虑三个客观职能:exerget绩效标准(EPC),基于漏洞的生态标准(E)和热经济标准(F) 。事实上,在分析上突出了出版物,生态和热经济标准。这是通过使用工作流体与不同部件之间的对流热交换的定律和有限时间热力学分析来完成的。这是通过最大限度地降低漏洞破坏率,环境影响和消耗的资金成本来确定系统的最佳运行点。而且,考虑了影响吸收热泵性能的参数是耐热性,热泄漏,热经济参数和两个内部不可逆因子,特别是在蒸发器 - 冷凝器组件之间。然而,流程图优化方法使得可以推断系统在性能系数方面在F的最大值和EPC标准中提出了显着的优势。尽管如此,在EPC的最大值的最大损失率下,THR AHP在EPC的最大值上具有显着的优势,并且在特定的加热负荷和漏胀输出速率方面的最大值。 (c)2019年Elsevier Ltd和IIR。版权所有。

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