Investigating potential benefits of a salinity gradient solar pond for ejector refrigeration cycle coupled with a thermoelectric generator

被引:53
|
作者
Rostamzadeh, Hadi [1 ]
Nourani, Pejman [2 ]
机构
[1] Sharif Univ Technol, Dept Aerosp Engn, Azadi Ave, Tehran, Iran
[2] Univ Tehran, Dept Mech Engn, Tehran, Iran
关键词
Salinity; Solar pond; Thermoelectric generator (TEG); Thermodynamic evaluation; Ejector refrigeration cycle (ERC); Ejector isentropic efficiency; PERFORMANCE ANALYSIS; SUPERSONIC EJECTOR; SYSTEM; EFFICIENCIES; EXTRACTION; WORKING; DRIVEN;
D O I
10.1016/j.energy.2019.01.167
中图分类号
O414.1 [热力学];
学科分类号
摘要
Extraction of thermal heat from a salinity-gradient solar pond (SGSP) as a way of accumulating solar energy, stockpiling and taking merit of it for medium and low temperature demands is presented as an interesting topic in recent decades. This reliable supply of heat can be used for low-temperature refrigeration systems to yield cooling load for residential applications. For this purpose, theoretical investigation of ejector refrigeration cycle (ERC) driven by a SGSP is carried out to produce cooling output. Also, thermoelectric generator (TEG) is used as a potential device replacing condenser of the ERC for the sake of bolstering performance of the fundamental system by producing power, using heat from SGSP. To express viscosity effect of refrigerant through different components of ejector, available numerical correlations are used and it is demonstrated that this deliberation highly increases the accuracy of ejector mathematical modeling. An extensive thermodynamic evaluation on the basis of the mass-, energy-, and exergy-based balance relations for disparate constituents of the introduced system is executed and the outcomes are corroborated with those of experiential approaches. Moreover, performance of the integrated system is optimized by maximizing energy efficiency as well as exergy efficiency for an optimal solar pond. At the optimum mode, the outcomes of modeling portrayed that the introduced system can culminate in furnishing cooling capacity of 9.216 kW and net electricity of 1.026 kW, respectively, at lower convective zone (LCZ) temperature of 359.7 K, La's thickness of 1.003 m, non convective zone of 1.339 m, upper convective zone of 0.102 m, and solar pond area of 189, 476 m(2). Under this optimum condition, the energy and exergy efficiencies are evaluated around 28.26% and 29.95%, respectively, using R245fa as working fluid in the ERC. In the optimal scenario, the ERC should be designed with primary pressure of 0.49 MPa, secondary pressure of 0.098 MPa, mass entrainment ratio of 0.3046, nozzle efficiency of 96.77%, mixer efficiency of 95.52%, and diffuser efficiency of 76.7%. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:675 / 690
页数:16
相关论文
共 18 条
  • [1] Comparing and optimizing the potential advantages of a salinity-gradient solar pond for either absorption-based or ejector-based refrigeration cycles combined with thermoelectric generators
    Liu, Bingzhi
    Tang, Lei
    Feng, Li
    Anqi, Ali E.
    Alamri, Sagr
    APPLIED THERMAL ENGINEERING, 2023, 219
  • [2] Power generation enhancement in a salinity-gradient solar pond power plant using thermoelectric generator
    Ziapour, Behrooz M.
    Saadat, Mohammad
    Palideh, Vahid
    Afzal, Sadegh
    ENERGY CONVERSION AND MANAGEMENT, 2017, 136 : 283 - 293
  • [3] DESIGN AND CONSTRUCTION OF A SIMPLE THERMOELECTRIC GENERATOR HEAT EXCHANGER FOR POWER GENERATION FROM SALINITY GRADIENT SOLAR POND
    Singh, Baljit
    Saoud, Altenaijy
    Remeli, Muhammed Fairuz
    Ding, Lai Chet
    Date, Abhijit
    Akbarzadeh, Aliakbar
    JURNAL TEKNOLOGI, 2015, 76 (05): : 21 - 24
  • [4] Feasibility investigation of a humidification-dehumidification (HDH) desalination system with thermoelectric generator operated by a salinity-gradient solar pond
    Rostamzadeh, Hadi
    Namin, Amin Shekari
    Nourani, Pejman
    Amidpour, Majid
    Ghaebi, Hadi
    DESALINATION, 2019, 462 : 1 - 18
  • [5] Examining potential benefits of combining a chimney with a salinity gradient solar pond for production of power in salt affected areas
    Akbarzadeh, Aliakbar
    Johnson, Peter
    Singh, Randeep
    SOLAR ENERGY, 2009, 83 (08) : 1345 - 1359
  • [6] STUDY ON THE PERFORMANCE OF SEMICONDUCTOR THERMOELECTRIC GENERATOR SYSTEM DRIVEN BY SALT GRADIENT SOLAR POND
    Ma, Hao
    Wang, Hua
    THERMAL SCIENCE, 2024, 28 (05): : 4357 - 4368
  • [7] Benefits of an innovative polygeneration system integrated with salinity gradient solar pond and desalination unit
    Esmaeilion, Farbod
    Soltani, M.
    Hoseinzadeh, Siamak
    Sohani, Ali
    Nathwani, Jatin
    DESALINATION, 2023, 564
  • [8] Employing thermoelectric generator and booster compressor for performance improvement of a geothermal driven combined power and ejector-refrigeration cycle
    Takleh, H. Rostamnejad
    Zare, V.
    ENERGY CONVERSION AND MANAGEMENT, 2019, 186 : 120 - 130
  • [9] Power Generation from Salinity Gradient Solar Pond Using Thermoelectric Generators for Renewable Energy Application
    Singh, Baljit
    Tan, Lippong
    Date, Abhijit
    Akbarzadeh, Aliakbar
    2012 IEEE INTERNATIONAL CONFERENCE ON POWER AND ENERGY (PECON), 2012, : 89 - 92
  • [10] Energy and advanced exergy analyses of novel ejector-compressor partially coupled refrigeration cycle for buildings with less solar energy
    Xu, Yingjie
    Huang, Songlin
    Wang, Jiafeng
    Song, Mengjie
    Yu, Jiaqi
    Shen, Xi
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2022, 14 (04)