Investigation of an efficient and green system based on liquid air energy storage (LAES) for district cooling and peak shaving: Energy and exergy analyses
被引:33
|
作者:
Kandezi, Morteza Saleh
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机构:
Islamic Azad Univ, West Tehran Branch, Dept Mech Engn, Tehran, IranIslamic Azad Univ, West Tehran Branch, Dept Mech Engn, Tehran, Iran
Kandezi, Morteza Saleh
[1
]
Naeenian, Seyed Mojtaba Mousavi
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机构:
Islamic Azad Univ, West Tehran Branch, Dept Mech Engn, Tehran, IranIslamic Azad Univ, West Tehran Branch, Dept Mech Engn, Tehran, Iran
Naeenian, Seyed Mojtaba Mousavi
[1
]
机构:
[1] Islamic Azad Univ, West Tehran Branch, Dept Mech Engn, Tehran, Iran
Liquid air energy storage;
Absorption chiller;
Kalina cycle;
Energy storage;
District heating;
Energy and exergy analysis;
COMPRESSED-AIR;
THERMODYNAMIC ANALYSIS;
HEAT;
PERFORMANCE;
OPTIMIZATION;
SOLAR;
PLANT;
COLD;
ORC;
D O I:
10.1016/j.seta.2021.101396
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Liquid air energy storage is a very new energy storage technology for large-scale applications with brilliant advantages over the other available grid-scale storage concepts such as higher energy density and no topographical restriction. In the present study, to assist more development of this technology, an efficient and green multi-generation system based on the liquid air energy storage, absorption cycle, and Kalina system is proposed and deeply investigated from the first and second laws of thermodynamics and economic. Moreover, a sensitivity analysis is conducted to scrutinize the effect of critical parameters on system performance. The proposed system can be efficiently used for power and cooling capacity production during peak demand periods, both of which can assist peak shaving and grid stability. Thermodynamic analysis indicates that during peak demand periods, a power of 5300 kW is generated by the air turbine during 3 h and with round trip energy and exergy efficiencies of 65.7% and 49.7%, respectively. The economic analysis shows that the investment cost of the system is around 3.68 $M and the referenced system has a payback time of 3.6 years and a total turnover of 11.3 $M can be achieved at the end of 25th year.
机构:
Dalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R ChinaDalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R China
Wang, Zhiwen
Xiong, Wei
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Dalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R ChinaDalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R China
Xiong, Wei
Carriveau, Rupp
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机构:
Univ Windsor, Ed Lumley Ctr Engn Innovat, Turbulence & Energy Lab, Windsor, ON, CanadaDalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R China
Carriveau, Rupp
Ting, David S. -K.
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机构:
Univ Windsor, Ed Lumley Ctr Engn Innovat, Turbulence & Energy Lab, Windsor, ON, CanadaDalian Maritime Univ, Inst Ship Electromech Equipment, Dalian, Peoples R China
机构:Univ Qom, Div Thermal Sci & Energy Syst, Energy Environm & Biol Syst Res Lab (EEBRlab), Dept Mech Engn,Fac Tech & Engn, Qom, Iran
Ghorbani, Bahram
Manesh, Mohammad Hasan Khoshgoftar
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机构:
Univ Qom, Div Thermal Sci & Energy Syst, Energy Environm & Biol Syst Res Lab (EEBRlab), Dept Mech Engn,Fac Tech & Engn, Qom, Iran
Amol Univ Special Modern Technol, Fac Engn Modern Technol, Amol, IranUniv Qom, Div Thermal Sci & Energy Syst, Energy Environm & Biol Syst Res Lab (EEBRlab), Dept Mech Engn,Fac Tech & Engn, Qom, Iran