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INTERNAL VESSEL COOLING FEASIBILITY ATTRIBUTED BY CRITICAL HEAT FLUX IN INCLINED RECTANGULAR GAP

机译:矩形矩形间隙中临界热流归因于内部容器冷却的可行性

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摘要

This paper addresses the pool boiling critical heat flux (CHF) phenomena in one-dimensional inclined rectangular channels by changing the orientation of a copper test heater assembly. In a pool of saturated water at atmospheric pressure, an account is taken of the gap sizes of 1, 2, 5, and 10 mm and the surface orientation angles from the downward-facing position (180 deg) to the vertical position (90 deg). Tests are conducted on the basis of the visualization of boiling phenomena utilizing a high-speed digital camera. In addition, an engineering correlation relating to the CHF near the vertical position is developed anchored in the experimental results. It is observed that the CHF generally decreases as the surface inclination angle increases and as the gap size decreases. In the downward-facing position (180 deg), on the other hand, the vapor escape and liquid refill are accelerated by the squeezing gap so that the CHF tends to increase as the gap size decreases. It is also found that there exists a transition angle, around which the CHF changes with a rapid slope on account of the CHF triggering mechanism differing with the inclination angle.
机译:本文通过更改铜测试加热器组件的方向来解决一维倾斜矩形通道中的池沸腾临界热通量(CHF)现象。在大气压下的饱和水池中,应考虑到间隙尺寸为1、2、5和10 mm,以及从朝下位置(180度)到垂直位置(90度)的表面取向角)。使用高速数码相机在沸腾现象可视化的基础上进行测试。另外,在实验结果中锚定了与垂直位置附近的CHF相关的工程相关性。观察到CHF通常随着表面倾斜角的增加和间隙尺寸的减小而减小。另一方面,在向下的位置(180度),蒸汽的逸出和液体的再填充由于挤压间隙而加速,使得CHF随间隙尺寸的减小而趋于增大。还发现存在过渡角,由于CHF触发机构随倾斜角的不同,在该过渡角附近CHF以快速的斜率变化。

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