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首页> 外文期刊>MATEC Web of Conferences >The Effect of Inclination Angle on Critical Heat Flux in a Locally Heated Liquid Film Moving Under the Action of Gas Flow in a Mini-Channel
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The Effect of Inclination Angle on Critical Heat Flux in a Locally Heated Liquid Film Moving Under the Action of Gas Flow in a Mini-Channel

机译:倾斜角对微通道内气流作用下局部加热的液膜中临界热通量的影响

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Intensively evaporating liquid films moving under the action of the cocurrent gas flow in a microchannel are promising for the use in modern cooling systems of semiconductor devices with high local heat release. This work has studied the dependence of the critical heat flux on the inclination angle of the channel. It has been found that the inclination angle in the plane parallel to the flow has no significant effect on the critical heat flux. Whereas the inclination angle in the plane perpendicular to the flow, on the contrary, significantly changes the value of the critical heat flux. However, for a given flow rate of fluid there is a threshold gas velocity at which the critical heat flux does not differ from the case of zero inclination of the channel. Thus, it can be concluded that the cooling system based on shear-driven liquid films can be potentially used when direction of the gravity changes.
机译:在微通道中并流气流的作用下,强烈蒸发的液膜有望用于具有高局部热量释放的半导体器件的现代冷却系统中。这项工作研究了临界热通量对通道倾角的依赖性。已经发现,平行于流动的平面中的倾斜角对临界热通量没有显着影响。相反,垂直于流动的平面中的倾斜角会显着改变临界热通量的值。但是,对于给定的流体流速,存在阈值气体速度,在该速度下,临界热通量与通道零倾角的情况没有区别。因此,可以得出结论,当重力方向改变时,可以潜在地使用基于剪切驱动的液膜的冷却系统。

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