Theoretical investigations on combined power and ejector cooling system powered by low-grade energy source

被引:9
作者
Chen, Xiangjie [1 ]
Su, Yuehong [1 ]
Omer, Siddig [1 ]
Riffat, Saffa [1 ]
机构
[1] Univ Nottingham, Dept Architecture & Built Environm, Nottingham NG7 2RD, England
关键词
combined power and cooling; ejector; low-grade energy; thermodynamic simulation; turbine; THERMODYNAMIC CYCLE; WASTE HEAT; REFRIGERATION; PERFORMANCE; DESIGN;
D O I
10.1093/ijlct/ctv015
中图分类号
O414.1 [热力学];
学科分类号
摘要
A combined power and cooling system is proposed for cogeneration, which integrates the ejector cooling cycle with the Rankine cycle. Low-temperature heat source such as industrial waste heat or solar energy can be used to drive the Rankine cycle. This system will provide electricity and cooling effect simultaneously without consuming primary energy. The partially expanded vapor (from low-grade energy) will be bleed off and enter into ejector's primary nozzle, which achieves cooling effect. Simulations have been carried out to analyze the effects of various working conditions on the overall system performance, on ejector entrainment ratio and turbine power output. Five different refrigerants HFE7100, HFE7000, methanol, ethanol and water have been selected, and the above three parameters were compared, respectively. The simulation results indicated that turbine expansion ratio, heat source temperature, condenser temperature and evaporator temperature play significant roles on the turbine power output, ejector entrainment ratio and the overall thermal efficiency of the system. At a heat source temperature of 120 degrees C, evaporator temperature of 10 degrees C and condenser temperature of 35 degrees C, methanol showed the highest thermal efficiency (0.195), followed by ethanol and water (0.173). It is recommended that the evaporator temperature and the appropriate working fluid should be selected according to the different working cooling requirements, and the turbine power output can then be determined accordingly.
引用
收藏
页码:466 / 475
页数:10
相关论文
共 50 条
  • [1] Thermodynamic Study of a Combined Power and Refrigeration System for Low-Grade Heat Energy Source
    Khatoon, Saboora
    Almefreji, Nasser Mohammed A.
    Kim, Man-Hoe
    ENERGIES, 2021, 14 (02)
  • [2] Analysis of a combined power and cooling cycle for low-grade heat sources
    Demirkaya, Gokmen
    Vasquez Padilla, Ricardo
    Goswami, D. Yogi
    Stefanakos, Elias
    Rahman, Muhammad M.
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2011, 35 (13) : 1145 - 1157
  • [3] Off-design performance analysis of a combined cooling and power system driven by low-grade heat source
    Du, Yang
    Han, Pengfei
    Qiang, Xiongchao
    Hao, Muting
    Long, Ying
    Zhao, Pan
    Dai, Yiping
    ENERGY CONVERSION AND MANAGEMENT, 2018, 159 : 327 - 341
  • [4] Cascade utilization of low-grade thermal energy by coupled elastocaloric power and cooling cycle
    Qian, Suxin
    Wang, Yao
    Xu, Shijie
    Chen, Yanliang
    Yuan, Lifen
    Yu, Jianlin
    APPLIED ENERGY, 2021, 298
  • [5] Thermal modelling and optimization of low-grade waste heat driven ejector refrigeration system incorporating a direct ejector model
    Riaz, Fahid
    Lee, Poh Seng
    Chou, Siaw Kiang
    APPLIED THERMAL ENGINEERING, 2020, 167
  • [6] Experimental studies on combined cooling and power system driven by low-grade heat sources
    Kumar, G. Praveen
    Saravanan, R.
    Coronas, Alberto
    ENERGY, 2017, 128 : 801 - 812
  • [7] Experimental study on ejector refrigeration system powered by low grade heat
    Yapici, R.
    Yetisen, C. C.
    ENERGY CONVERSION AND MANAGEMENT, 2007, 48 (05) : 1560 - 1568
  • [8] Thermodynamic analysis of a novel combined cooling and power system driven by low-grade heat sources
    Yin, Jiqiang
    Yu, Zeting
    Zhang, Chenghui
    Tian, Minli
    Han, Jitian
    ENERGY, 2018, 156 : 319 - 327
  • [9] Evaluation of ejector performance for an organic Rankine cycle combined power and cooling system
    Zhang, Kun
    Chen, Xue
    Markides, Christos N.
    Yang, Yong
    Shen, Shengqiang
    APPLIED ENERGY, 2016, 184 : 404 - 412
  • [10] EJECTOR COMPRESSION SYSTEMS FOR COOLING - UTILIZING LOW-GRADE WASTE HEAT
    TYAGI, KP
    MURTY, KN
    JOURNAL OF HEAT RECOVERY SYSTEMS, 1985, 5 (06): : 545 - 550