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Effect of Jet Reynold’s Number on Nusselt Number for Convective Impingement Air Cooling on a Hot Plate

机译:雷诺数对热板上对流撞击空气冷却的Nusselt数的影响

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Studies were carried out to determine the Convective Heat Transfer Coefficient, h, under multiple jets of impinging cold air on a target heated flat plate. Tests were run with air- distribution plates with hole diameters, d, of 1.5mm, 2.0mm, 2.5mm and 3.0mm. The target plate is a carbon-steel flat plate of 6mm thickness, instrumented with a total of three Chromel-Alumel K-type thermocouples. The plate is electrically heated using a variable supply current input. Test were run at various cooling air flow rate G, between 1.0kg/m3, sec to 3.0kg/m3, sec. Distribution plate-to-target plate distance Z(mm), was varied between 100mm to 200mm. Heat input to the target plate Q Watt, was varied to give a heat flux rate between 10 to 100 watts. Results obtained were reduced and analyzed by evaluating for the dependence of h on the impingement jet diameter,Jet Reynolds Number, and the coolant mass flow rate G. Correlations were done, using the dimensionless parameters of Nusselt Number, Reynolds Number and Prandtl Number. Based on the results obtained, it is proposed that within the Reynolds Number range of 1500 to 2000, correlation may be made with:- = 0.15Re0.58Pr0.33 Keywords: Reynold’s Number, Nusselt Number, Prandtl Number, Impingement, Cooling, Heat transfer Coefficient
机译:进行了研究,以确定在将冷空气撞击到目标加热平板的多次喷射下的对流传热系数h。使用直径为1.5mm,2.0mm,2.5mm和3.0mm的空气分配板进行测试。目标板是厚度为6mm的碳钢平板,总共装有三个Chromel-Alumel K型热电偶。使用可变的电源电流输入对板进行电加热。在各种冷却空气流量G(介于1.0kg / m3秒至3.0kg / m3秒之间)下进行测试。分布板到目标板的距离Z(mm)在100mm至200mm之间变化。改变输入到目标板Q Watt的热量,以提供10到100瓦之间的热通量。通过评估h对冲击射流直径,射流雷诺数和冷却剂质量流量G的依赖性来减少和分析获得的结果。使用Nusselt数,雷诺数和Prandtl数的无量纲参数进行相关。根据获得的结果,建议在1500到2000的雷诺数范围内,可以建立以下关系:-= 0.15Re0.58Pr0.33关键字:雷诺数,努塞尔特数,普朗特数,冲击,冷却,热转移系数

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