The effect of fins shadow on natural convection solar air heater

被引:31
|
作者
Hosseini, Seyedeh Sahar [1 ]
Ramiar, Abas [1 ]
Ranjbar, Ali Akbar [1 ]
机构
[1] Babol Noshiravani Univ Technol, Fac Mech Engn, Thermofluid Dept, Babol Sar, Iran
关键词
Solar air heater; Natural convection; Fins; Shadow; Inclination angle; Mass flow rate and performance; PERFORMANCE EVALUATION; CHIMNEY; VENTILATION; ABSORBER; FLOW; ENHANCEMENT; PLATE; OPTIMIZATION; SIMULATION; ENERGY;
D O I
10.1016/j.ijthermalsci.2019.04.015
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this study, natural convection in solar air heaters with different fins is numerically investigated. Effect of fin shape (rectangular, elliptical and triangular), the inclination angle (45-90 degrees) on mass flow rate, temperature and performance are studied by considering the effect of shadow created by fins. Three different cases, solar air heater with fins considering shadow effect (Shadow Effect Considered: SEC), ones with fins neglecting shadow effect (Shadow Effect Neglected: SEN), and ones without fins (WF) are compared. It can be concluded that shadow created by fins, which eliminates some part of absorber from playing a direct role in heat transfer, has a significant impact on finding the best performance and dimensions of fins. For example, the performance of rectangular and triangular fins in case SEC are about 10% and 20% less than case SEN. Due to fins shadow, mass flow rates in solar air heaters without fins (WF) is more than solar air heaters with fins in higher inclination angles. While the highest mass flow rate is achieved for depth between 0.005 and 0.010 m, but the best depth from performance point of view is about 0.025 m and improvement in performance is negligible for larger depths.
引用
收藏
页码:280 / 294
页数:15
相关论文
共 50 条
  • [41] The performance of a solar air heater with conical concentrator under forced convection
    Togrul, IT
    Pehlivan, D
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2003, 42 (06) : 571 - 581
  • [42] Experimental study of thermal performance of solar aluminium cane air heater with and without fins
    Murali, G.
    Sundari, A. T. M.
    Raviteja, S.
    Chanukyachakravarthi, S.
    Tejpraneeth, M.
    MATERIALS TODAY-PROCEEDINGS, 2020, 21 : 223 - 230
  • [43] Experimental study on double pass solar air heater with fins at lower and upper channel
    Murali, G.
    Nandan, B. Sai
    Reddy, N. Sampath Kumar
    Teja, D.
    Kumar, N. Kalyan
    MATERIALS TODAY-PROCEEDINGS, 2020, 21 : 578 - 583
  • [44] Thermal Performance of Solar Air Heater using Jet Impingement Technique with Longitudinal Fins
    Goel, A. K.
    Singh, S. N.
    JOURNAL OF SCIENTIFIC & INDUSTRIAL RESEARCH, 2017, 76 (12): : 780 - 784
  • [45] Experimental study of heat transfer and thermal performance with longitudinal fins of solar air heater
    Chabane, Foued
    Moummi, Noureddine
    Benramache, Said
    JOURNAL OF ADVANCED RESEARCH, 2014, 5 (02) : 183 - 192
  • [46] Influence of fin density on the performance of an impinging jet with fins type solar air heater
    Abhishek Kumar Goel
    S. N. Singh
    Environment, Development and Sustainability, 2020, 22 : 5873 - 5886
  • [47] Correction to: Experimental performance evaluation of an impinging jet with fins type solar air heater
    Abhishek Kumar Goel
    Shailendra Narayan Singh
    Environmental Science and Pollution Research, 2021, 28 : 19958 - 19958
  • [48] Turbulent flow-thermal-thermodynamic characteristics of a solar air heater with spiral fins
    Du, Juan
    Chen, Hui
    Li, Qing
    Huang, Yongchun
    Hong, Yuxiang
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2024, 226
  • [49] Development of a dynamic model for a hybrid photovoltaic thermal collector - Solar air heater with fins
    Fan, Wenke
    Kokogiannakis, Georgios
    Ma, Zhenjun
    Cooper, Paul
    RENEWABLE ENERGY, 2017, 101 : 816 - 834
  • [50] Experimental thermal performance of a solar air heater with rectangular fins and phase change material
    Balakrishnan, Paramasivam
    Vishnu, Senthil Kumar
    Muthukumaran, Jayaraman
    Senthil, Ramalingam
    JOURNAL OF ENERGY STORAGE, 2024, 84