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Convective heat transfer inside a rotating cylinder with an axial air flow

机译:旋转圆柱体内的对流传热和轴向气流

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摘要

This article presents an experimental identification technique for the convective heat transfer coefficient inside a rotating cylinder with an axial airflow, The method consists in heating the outer face of the cylinder using infrared lamps, and acquiring the evolution of the external surface temperature versus time using an infrared camera. Heat transfer coefficients are identified via three methods. The first one is based on an inverse model, the second one assumes the wall of the cylinder as a thermally thin wall and the third one is based on an analytical method permitting to obtain the temperature field within the whole cylinder. The experiments were carried out for a rotational speed ranging from 4 to 880 rpm corresponding to rotational Reynolds numbers varying from 1.6×10{sup}3 to 4.7×10{sup}5 and an air flow rate varying from 0 to 530 m{sup}3 h{sup}(-1) which corresponds to an axial Reynolds numbers ranging from 0 to 3×10{sup}4. Correlations connecting the Nusselt number to the axial and rotational Reynolds numbers are also proposed.
机译:本文提出了一种在轴向气流的旋转圆柱体内对流传热系数的实验识别技术,该方法包括使用红外灯加热圆柱体的外表面,并利用红外光谱获取外表面温度随时间的变化。红外摄像机。传热系数通过三种方法确定。第一个基于逆模型,第二个基于圆柱体的壁为热薄壁,而第三个基于允许获得整个圆柱体内温度场的分析方法。实验是在4到880 rpm的转速范围内进行的,对应于从1.6×10 {sup} 3到4.7×10 {sup} 5变化的旋转雷诺数和从0到530 m {sup } 3 h {sup}(-1)对应于范围从0到3×10 {sup} 4的轴向雷诺数。还提出了将努塞尔数与轴向雷诺数和旋转雷诺数联系起来的相关性。

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