Experimental investigation of a hemispherical solar collector performance with helical risers by using Ag-CuO/water hybrid nanofluid

被引:0
|
作者
Nasiri, Reza [1 ]
Saffarian, Mohammad Reza [1 ]
Moravej, Mojtaba [2 ]
机构
[1] Shahid Chamran Univ Ahvaz, Dept Mech Engn, Ahvaz, Iran
[2] Payame Noor Univ, Dept Mech Engn, Tehran, Iran
关键词
Hemispherical solar collector; Helical risers; Ag-CuO/water hybrid nanofluid; Experimental analysis; CONVECTION HEAT-TRANSFER; OPTIMUM TILT ANGLE; THERMAL PERFORMANCE; ABSORBER COIL; AIR; CONDUCTIVITY; RADIATION; SQUARE;
D O I
10.1007/s10973-024-13595-6
中图分类号
O414.1 [热力学];
学科分类号
摘要
A stationary, symmetrical hemispherical solar collector with helical risers is experimentally investigated. Pure water and Ag-CuO/water hybrid nanofluid are used as the working fluid. The nanoparticle's volume fractions are 0.1 and 0.3%, and the flow rates of the working fluid are 1, 1.5, and 2 Lmin-1. A total of 9 tests have been conducted in 9 consecutive days during August 2022. All tests were performed according to ASHRAE standards. The main novelty of this study is the practical use of hybrid nanofluid and helical risers in a solar collector with hemispherical geometry. According to the results, a hemispherical solar collector exhibits hopeful and favorable thermal efficiency due to its particular shape and the unique arrangement of its helical risers. The results show that with the increase in flow rate, the temperature difference between the inlet and outlet of the hemispherical solar collector and the heat exchanger inside storage tank decreases, while the thermal performance of the solar collector increases. Also, when the concentration of nanoparticles increases, the temperature difference between the inlet and outlet of the collector, and the thermal efficiency, increases. The results show that the maximum thermal efficiency of the solar collector is 86.8% and the maximum average temperature of the fluid around the heat exchanger in the storage tank is 79.8 degrees C, and these results are related to the hybrid nanofluid with a volume fraction of 0.3% and a flow rate of 2 Lmin-1.
引用
收藏
页码:13407 / 13423
页数:17
相关论文
共 50 条
  • [41] Experimental investigation of exergy performance of a water cooled hybrid photovoltaic thermal collector
    Gakkhar, Nikhil
    Soni, Manoj Kumar
    Jakhar, Sanjeev
    INTERNATIONAL JOURNAL OF EXERGY, 2020, 31 (04) : 330 - 351
  • [42] Numerical and experimental studies of thermal performance enhancement for parabolic trough solar collector using none-circulated CuO/synthetic oil nanofluid
    Elmnefi, Mohamed
    Al-Khazraji, Waqas
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2023, 33 (09) : 3124 - 3163
  • [43] PERFORMANCE OF EVACUATED TUBE SOLAR COLLECTOR USING WATER-BASED TITANIUM OXIDE NANOFLUID
    Mahendran, M.
    Lee, G. C.
    Sharma, K. V.
    Shahrani, A.
    Bakar, R. A.
    JOURNAL OF MECHANICAL ENGINEERING AND SCIENCES, 2012, 3 : 301 - 310
  • [44] Performance assessment of a parabolic trough solar collector using nanofluid and water based on direct absorption
    Ram, Shri
    Ganesan, H.
    Saini, Vishnu
    Kumar, Abhinav
    RENEWABLE ENERGY, 2023, 214 : 11 - 22
  • [45] Experimental investigation on the performance of a flat plate solar collector using pulsating flow
    Sharafeldin, M. A.
    Abdelghany, Mohamed T.
    RENEWABLE ENERGY, 2025, 244
  • [46] Energy and exergy comparison of a flat-plate solar collector using water, Al2O3 nanofluid, and CuO nanofluid
    Tong, Yijie
    Lee, Hoseong
    Kan, Woobin
    Cho, Honghyun
    APPLIED THERMAL ENGINEERING, 2019, 159
  • [47] Experimental Investigation and Performance Evaluation of Parabolic Trough Solar Collector for Hot Water Generation
    Al-Rabeeah, A. Y.
    Seres, I.
    Farkas, I.
    JOURNAL OF ENGINEERING THERMOPHYSICS, 2021, 30 (03) : 420 - 432
  • [48] Experimental Investigation and Performance Evaluation of Parabolic Trough Solar Collector for Hot Water Generation
    A. Y. Al-Rabeeah
    I. Seres
    I. Farkas
    Journal of Engineering Thermophysics, 2021, 30 : 420 - 432
  • [49] Experimental investigation of graphene nanoplatelets nanofluid-based volumetric solar collector for domestic hot water systems
    Vakili, M.
    Hosseinalipour, S. M.
    Delfani, S.
    Khosrojerdi, S.
    Karami, M.
    SOLAR ENERGY, 2016, 131 : 119 - 130
  • [50] Performance enhancement of flat plate solar collector using ZrO2-SiC/DW hybrid nanofluid: A comprehensive experimental study
    Ajeena, Ahmed M.
    Farkas, Istvan
    Vig, Piroska
    ENERGY CONVERSION AND MANAGEMENT-X, 2023, 20