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首页> 外文期刊>Journal of Crystal Growth >Delayed onset of return flow by substrate inclination in model horizontal longitudinal MOCVD processes
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Delayed onset of return flow by substrate inclination in model horizontal longitudinal MOCVD processes

机译:在模型水平纵向MOCVD工艺中,由于基片倾斜而延迟了回流的开始

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In this study an experimental flow visualization is carried out to investigate how the substrate inclination affects the buoyancy-induced return flow structure in mixed convection of gas in a horizontal rectangular duct. The return flow is driven by a heated circular disk embedded in the bottom plate of the duct. simulating that in a horizontal longitudinal MOCVD reactor. Specifically, the bottom plate of the duct is inclined so that the gas flow in the duct is accelerated, causing the buoyancy-to-inertia ratio to decrease in the main flow direction. In the experiment. the Reynolds and Rayleigh numbers of the flow at the duct inlet are respectively varied from 3.7 to 79.7 and from 90,40 to 24,000 for the inclined angle of the bottom plate fixed at 0degrees, 0.34degrees and 0.97degrees. Particular attention is paid to delineating the spatial changes of the return flow structure with the plate inclination angle and to how the bottom plate tilting possibly, suppresses and stabilizes the flow. The results show a substantial delay in the onset of the return flow and the effctive suppression of the buoyancy-driven unstable vortex flow by the bottom plate inclination. Besides, the bottom, plate inclination can effectively weaken the return flow at slightly higher Reynolds numbers. An empirical equation is provided to correlate the present data for the onset of the return flow in the duct with its bottom inclined at 0: and 0.97degrees. (C) 2004 Elsevier B.V. All rights reserved.
机译:在这项研究中,进行了实验流动可视化,以研究在水平矩形管道中的气体混合对流中,底物倾角如何影响浮力诱导的回流结构。回流由嵌入在管道底板中的加热圆盘驱动。在水平纵向MOCVD反应器中进行模拟。具体地,管道的底板倾斜,使得管道中的气体流被加速,从而导致浮力惯性比在主流方向上减小。在实验中。对于固定在0度,0.34度和0.97度的底板的倾斜角,在导管入口处的流的雷诺数和瑞利数分别从3.7变化到79.7,并且从90,40变化到24,000。特别要注意的是用板倾角来描述回流结构的空间变化,以及底板如何可能倾斜,抑制和稳定流动。结果表明,由于底板的倾斜,回流的开始有很大的延迟,并且有效抑制了浮力驱动的不稳定涡流。此外,底部,平板的倾斜可以有效地减弱雷诺数稍高的回流。提供了一个经验方程式,可将管道中回流的开始时的当前数据与底部倾斜为0:和0.97°的相关数据联系起来。 (C)2004 Elsevier B.V.保留所有权利。

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