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Investigation of an integrated system combining an Organic Rankine Cycle and absorption chiller driven by geothermal energy: Energy, exergy, and economic analyses and optimization

机译:结合地热能驱动的有机朗肯循环和吸收冷水机构的集成系统的研究:能源,漏洞和经济分析和优化

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摘要

This study aims to investigate a novel hybrid system for combined cooling and power (CCP) driven by geothermal energy. This study is performed using energy, exergy, and economic analyses. The results of this study show that application of LiBr absorption chiller downstream of the Organic Rankine Cycle (ORC) cycle increases the energy efficiency of the system from 9.3% to 47.3%. But it decreases the exergy efficiency from 15.6% to 4.6%, mainly due to the increase in the exergy destruction of the system. By definition of a new parameter called the electricity and cooling cost for this hybrid system, the results show this parameter decreases from 0.0552 to 0.0028 $/kWh when the LiBr absorption chiller cycle is added. Moreover, a multi-objective optimization of this hybrid system is carried out by the MOPSO algorithm for two objective functions including cost of electricity and cooling (C-EC), and exergy efficiency (eta(ex)). The results show that the optimum electricity and cooling cost and exergy efficiency are 0.0033 $/kWh, and 6.8%, respectively. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究旨在研究由地热能驱动的用于组合冷却和功率(CCP)的新型混合系统。本研究采用能源,漏洞和经济分析进行。该研究的结果表明,在有机兰氨氨氨氨酸循环(ORC)周期下游的LIMB吸收冷却器的应用增加了系统的能效从9.3%到47.3%。但它降低了低于15.6%至4.6%的高度效率,主要是由于系统的出境破坏增加。根据一种新参数的定义,称为该混合系统的电力和冷却成本,结果显示该参数在添加LibR吸收冷却器周期时从0.0552降至0.0028 $ / kWh。此外,该混合系统的多目标优化由MOPSO算法进行了两个目标功能,包括电力成本(C-EC)和低通效率(ETA(ETA))。结果表明,最佳的电力和冷却成本和高度效率分别为0.0033美元/千瓦时,分别为6.8%。 (c)2020 elestvier有限公司保留所有权利。

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