Numerical and Experimental Study of Heat Transfer Enhancement for Horizontal Blowing Panel-Type Radiators with Multiple Fans
作者:Guanxun Diao, Wenrong Si, Chenzhao Fu, Heli Ni, Haimin Hu, Peng Yuan, Yuhang Tian, Jian Yang · 发表于:Machines · 年份:2025 · DOI:10.3390/machines13040296 · 被引用次数:2 · 研究领域:Advanced Aircraft Design and Technologies、Engineering Applied Research、Aerodynamics and Fluid Dynamics Research
To improve the thermal performance of air-cooled panel-type radiators for transformers, a multi-fan horizontal blowing method was designed in this paper, and the thermo-hydraulic performance of the oil-side and air-side of the panel-type radiator was investigated with a simplified numerical method and experiments. The uniform air distribution and zoned heat dissipation ideas were used for three blowing methods, which can increase the proportion of air supply for the high-temperature area of the radiator and apply multiple fans for zoned heat dissipation of the insulating oil in the radiator. Then, the effect of different insulating oil flow rates on the heat dissipation performance of the panel-type radiator was investigated. It was shown that the computational time for the simplified numerical simulation method used for an air-cooled panel-type radiator could be effectively shortened with a small relative error. Due to a more uniform air supply and prioritized air distribution for the high-temperature areas using the multi-fan horizontal blowing method, the overall heat dissipation efficiency was improved. Among the three blowing methods, the best heat dissipation performance was obtained by using the six-fan horizontal blowing scheme, which can improve the performance by about 10.42% and 15.44% in experimental and numerical studies, respectively, as compared with the traditional blowing method.