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Pool boiling heat transfer on tandem tubes in vertical alignment

机译:垂直排列的串联管上的池沸腾传热

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摘要

The combined effects of a tube pitch and the heat flux of a lower tube on saturated pool boiling heat transfer of tandem tubes were investigated experimentally. For the test, two smooth stainless steel tubes of 19 mm diameter and the water at atmospheric pressure were used. The pitch was varied from 28.5 to 114 mm and the heat flux of the lower tube was changed from 0 to 110 kW/m~2. The bundle effect was clearly observed when the heat flux of the lower tube was greater than that of the upper tube and the heat flux of the upper tube is less than 60 kW/m~2. The maximum bundle effect was 3.08 as the tube pitch was 95 mm when the heat fluxes of the upper and the lower tubes were 10 and 90 kW/m~2, respectively. In general, the bundle effect was decreased with increasing the tube pitch. The major heat transfer mechanisms are considered as the convective flow of bubbles, rising from the lower tube, and liquid agitation caused by the bubbles. As a way of quantifying the bundle effects a simple empirical correlation was suggested.
机译:实验研究了管间距和下部管的热通量对串联管的饱和池沸腾传热的综合影响。为了进行测试,使用了两个直径为19 mm的光滑不锈钢管和大气压下的水。螺距从28.5变为114 mm,下管的热通量从0变为110 kW / m〜2。当下管的热通量大于上管的热通量且上管的热通量小于60 kW / m〜2时,可以清楚地观察到束效应。当上管和下管的热通量分别为10和90 kW / m〜2时,当管间距为95 mm时,最大束效应为3.08。通常,束效应随着管间距的增加而减小。主要的传热机制被认为是气泡的对流,它从下管上升,并且由气泡引起的液体搅动。作为量化束效应的一种方法,提出了一种简单的经验相关性。

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