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Experimental study of fluid flow and heat transfer characteristics in the square channel with a perforation baffle

机译:带穿孔挡板的方形通道内流体流动和传热特性的实验研究

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This work performed a detailed measurement of local heat transfer coefficients in a square channel with a perforation baffle by using the transient liquid crystal themography. The varied parameters were the Reynolds number, the baffle height, and the hole numbers on the perforation baffle. The results showed that the enhancements of local heat transfer appeared in the leading edge of the baffle due to the impinging effect, which was more significant when Reynolds number became larger or the baffle height became higher. Additionally, the heat transfer coefficients off center were better than those in the center at downstream of the baffle. It might be resulted from two secondary flows, which appeared off center after the airflow passed through the baffle. Baffles with various hole numbers but having same total hole area were also studied to find the heat transfer enhancement. The results depicted that the back facing step flow which had characteristics of backflow and flow reattachment had an important effect on the heat transfer characteristics at downstream of the baffle. Finally, the correlation for the location of the flow reattachment point (X_r) was proposed.
机译:这项工作通过使用瞬态液晶成像技术,对带有穿孔挡板的方形通道中的局部传热系数进行了详细的测量。变化的参数是雷诺数,挡板高度和穿孔挡板上的孔数。结果表明,由于撞击的作用,在挡板的前缘出现了局部传热的增强,当雷诺数变大或挡板的高度变高时,这种传热效果尤为明显。另外,偏离中心的传热系数要比挡板下游中心的传热系数好。这可能是由于二次气流造成的,它们在气流通过挡板后偏离中心。还研究了具有不同孔数但总孔面积相同的导流板,以提高传热效率。结果表明,具有回流和流重新附着特性的背向阶梯流对折流板下游的传热特性具有重要影响。最后,提出了流重新连接点(X_r)位置的相关性。

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