Performance Analysis of a Thermoelectric Solar Collector Integrated with a Heat Pump

被引:0
|
作者
C. Lertsatitthanakorn
J. Jamradloedluk
M. Rungsiyopas
A. Therdyothin
S. Soponronnarit
机构
[1] Mahasarakham University,Thermal Processes Research Laboratory, Faculty of Engineering
[2] Burapha University,Mechanical Engineering Department, Faculty of Engineering
[3] King Mongkut’s University of Technology Thonburi,School of Energy, Environment and Materials
[4] Bangmod,undefined
来源
关键词
Coefficient of performance; conversion efficiency; solar-assisted heat pump;
D O I
暂无
中图分类号
学科分类号
摘要
A novel heat pump system is proposed. A thermoelectric solar collector was coupled to a solar-assisted heat pump (TESC-HP) to work as an evaporator. The cooling effect of the system’s refrigerant allowed the cold side of the system’s thermoelectric modules to work at lower temperature, improving the conversion efficiency. The TESC-HP system mainly consisted of transparent glass, an air gap, an absorber plate that acted as a direct expansion-type collector/evaporator, an R-134a piston-type hermetic compressor, a water-cooled plate-type condenser, thermoelectric modules, and a water storage tank. Test results indicated that the TESC-HP has better coefficient of performance (COP) and conversion efficiency than the separate units. For the meteorological conditions in Mahasarakham, the COP of the TESC-HP system can reach 5.48 when the average temperature of 100 L of water is increased from 28°C to 40°C in 60 min with average ambient temperature of 32.5°C and average solar intensity of 815 W/m2, whereas the conversion efficiency of the TE power generator was around 2.03%.
引用
收藏
页码:2320 / 2325
页数:5
相关论文
共 50 条
  • [31] Investigation of thermoelectric performance based on thermal load with porous heat collector and traditional heat collector
    Du, Haibo
    Dong, Cong
    Liu, Kaidi
    Bu, Zhongming
    Guo, Wenwen
    Ye, Yanghui
    Liu, Wanqi
    ENERGY CONVERSION AND MANAGEMENT, 2022, 251
  • [32] Performance analysis of modified solar still integrated with flat plate collector
    Subramanian, R. Siva
    Kumaresan, G.
    Ajith, R.
    Sabarivasan, U.
    Gowthamaan, K. K.
    Anudeep, S.
    MATERIALS TODAY-PROCEEDINGS, 2021, 45 : 1382 - 1387
  • [33] HEAT-TRANSFER ANALYSIS OF A FLAT-PLATE COLLECTOR IN A SOLAR THERMAL PUMP
    SUMATHY, K
    VENKATESH, A
    SRIRAMULU, V
    ENERGY, 1994, 19 (09) : 983 - 991
  • [34] Energy analysis of a thermal system composed by a heat pump coupled with a PVT solar collector
    Vallati, A.
    Oclon, P.
    Colucci, C.
    Mauri, L.
    Vollaro, R. de Lieto
    Taler, J.
    ENERGY, 2019, 174 : 91 - 96
  • [35] Performance evaluation of PV/T integrated heat pump using two different collector/evaporators
    Xu, Guoying
    Zhang, Xiaosong
    Yang, Lei
    Huagong Xuebao/CIESC Journal, 2008, 59 (SUPPL.): : 224 - 229
  • [36] Heating performance of a vapor compression heat pump cascaded with a thermoelectric heat pump
    Hu, Yifeng
    Shen, Bo
    Wan, Hanlong
    Gluesenkamp, Kyle R.
    Krishnamoorthy, Sreenidhi
    Shirey, Don
    APPLIED THERMAL ENGINEERING, 2024, 249
  • [37] Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
    Charvat, P.
    Pech, O.
    Hejcik, J.
    EFM12 - EXPERIMENTAL FLUID MECHANICS 2012, 2013, 45
  • [38] Heat pump using a solar collector with photovoltaic modules on the surface
    Ito, S
    Miura, N
    Wang, JQ
    Nishikawa, M
    JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 1997, 119 (02): : 147 - 151
  • [39] Performance analysis of a photovoltaic thermal-thermoelectric cooler air collector integrated with a mixed-mode greenhouse solar dryer
    Singh, Ajay Pratap
    Tiwari, Sumit
    Sinhmar, Harender
    INTERNATIONAL JOURNAL OF EXERGY, 2024, 45 (1-2) : 1 - 23
  • [40] Performance analysis of a solar heat collector through experimental and CFD investigation
    Tan, A. S. T.
    Janaun, J.
    Tham, H. J.
    Siambun, N. J.
    Abdullah, A.
    MATERIALS TODAY-PROCEEDINGS, 2022, 57 : 1338 - 1344