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

被引:133
作者
Ehyaei, M. A. [1 ]
Ahmadi, A. [2 ]
Assad, M. El Haj [3 ]
Rosen, Marc A. [4 ]
机构
[1] Islamic Azad Univ, Dept Mech Engn, Pardis Branch, Pardis New City, Iran
[2] Iran Univ Sci & Technol, Sch New Technol, Dept Energy Syst Engn, Tehran, Iran
[3] Univ Sharjah, Sustainable & Renewable Energy Engn Dept, Sharjah, U Arab Emirates
[4] Univ Ontario, Fac Engn & Appl Sci, Inst Technol, 2000 Simcoe St North, Oshawa, ON L1G 0C5, Canada
关键词
Geothermal; Absorption chiller; Optimization; MOPSO; ORC; THERMOECONOMIC OPTIMIZATION; THERMODYNAMIC ANALYSIS; POWER-PLANT; MULTIOBJECTIVE OPTIMIZATION; WORKING FLUID; COMBINED HEAT; ORC; HYDROGEN; PERFORMANCE; SOLAR;
D O I
10.1016/j.jclepro.2020.120780
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
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.
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页数:13
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