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Pool boiling heat transfer on a vertical tube with a partial annulus of closed bottoms

机译:垂直沸腾管的沸腾沸腾传热,底部有部分环空

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To improve pool boiling heat transfer in an annulus with closed bottoms, the length of an outer tube has been changed between 0.2 m and 0.6 m. A heated tube of 19.1 mm diameter and the water at atmospheric pressure have been used. Three annular gap sizes of 3.65, 6.35, and 17.95 mm have been investigated. To elucidate effects of the outer tube results of the annulus are compared with the data of a single unrestricted tube. The change in the outer tube length results in much variation in heat transfer. As the outer tube length is much shorter than the heated tube the deterioration point of heat transfer gets moved up to the higher heat fluxes and the possibility of CHF creation is prevented. The major cause of the tendencies is related with the decrease in the intensity of bubble coalescence.
机译:为了改善底部封闭的环形空间中的池沸腾传热,外管的长度已在0.2 m至0.6 m之间变化。已经使用了直径为19.1mm的加热管和大气压下的水。已经研究了3.65、6.35和17.95 mm的三种环形间隙尺寸。为了阐明外管的效果,将环空的结果与单个无限制管的数据进行比较。外管长度的变化导致热传递的很大变化。由于外管的长度比加热管的长度短得多,因此传热的劣化点上升到更高的热通量,从而避免了CHF产生的可能性。这种趋势的主要原因与气泡聚结强度的降低有关。

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