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An experimental study of forced convective heat transfer from smooth, solid spheres

机译:光滑固体球对流强迫换热的实验研究

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Forced convective heat transfer from smooth, solid and isothermal spheres of various diameters has been studied experimentally in air flows with various free-stream velocities. The average heat transfer coefficient has been determined from the steady measured power input to a heating element inside the spheres and the steady measured temperatures of the flowing air and of the surface of the spheres, employing corrections to account for heat transfer due to thermal radiation and due to natural convection. The current data for the average heat transfer coefficient, expressed as a relationship between the Nusselt number and the Reynolds number, complement data in literature with respect to the range of large Reynolds numbers that have been considered: here the Reynolds numbers were between 7.8 × 10~3 and 3.3 × 10~5 . The experimental results show a sudden increase in the Nusselt number above a critical Reynolds number of approximately 2.9 × 10~5, analogous to the "drag crisis" for the drag force on the sphere. A correlation for the Nusselt number as a function of the Reynolds number has been formulated for air flows that describes these data well for Reynolds numbers below the critical Reynolds number.
机译:在具有各种自由流速度的空气流中,已经对来自各种直径的光滑,固体和等温球的强制对流换热进行了实验研究。平均传热系数是根据输入到球体内部加热元件的稳定测量功率以及流动空气和球体表面的稳定测量温度确定的,并采用修正来解决由于热辐射和由于自然对流。当前平均传热系数的数据表示为努塞尔数与雷诺数之间的关系,是文献中关于已考虑的大雷诺数范围的补充数据:此处雷诺数在7.8×10之间〜3和3.3×10〜5。实验结果表明,努塞尔特数突然增加到超过大约2.9×10〜5的临界雷诺数,类似于球上阻力的“阻力”。已经为气流制定了努塞尔数与雷诺数的函数的相关性,该相关性很好地描述了低于临界雷诺数的雷诺数的这些数据。

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