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Oscillation Effect Of Impingement Surface On Two-dimensional Impingement Heat Transfer

机译:撞击面对二维撞击传热的振荡效应

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This paper describes the oscillation effect of impingement surface on two-dimensional impingement heat transfer with confined wall. The local temperature distribution on an impingement surface was measured using a thermosensitive liquid crystal sheet and an image processor. Experiments were conducted by using air as a working fluid. Experimental conditions were as follows: Reynolds number Re = 1000-10,000, dimensionless distance between nozzle and impingement surface h/B = 1.0-4.0, frequency f = 0-100 Hz, and amplitudes a =0.5 mm and 1.0 mm. The local Nusselt number was improved for the comparatively low Reynolds number and low frequency and was depressed for high frequency. In the case of heat transfer enhancement, vortices on the impingement surface were renewed frequently, and on the other hand, in the case of heat transfer depression, thermal boundary layer thickness increased in appearance by the vibration of the impingement surface.
机译:本文描述了撞击表面在有限壁二维碰撞传热中的振动效应。使用热敏液晶片和图像处理器测量撞击表面上的局部温度分布。通过使用空气作为工作流体进行实验。实验条件如下:雷诺数Re = 1000-10,000,喷嘴与冲击表面之间的无量纲距离h / B = 1.0-4.0,频率f = 0-100Hz,振幅a = 0.5mm和1.0mm。对于相对较低的雷诺数和低频,局部努塞尔数得到了改善,而对于高频,则被压低了。在传热增强的情况下,在冲击表面上的涡流被频繁地更新,另一方面,在传热降低的情况下,由于冲击表面的振动,热边界层的厚度在外观上增加了。

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