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Effect of Pressure, Subcooling, and Dissolved Gas on Pool Boiling Heat Transfer From Microporous Surfaces in FC-72

机译:压力,过冷和溶解气体对FC-72中微孔表面池沸腾传热的影响

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摘要

The present research is an experimental study of the effects of pressure, subcooling, and non-condensable gas (air) on the pool nucleate boiling heat transfer performance of a microporous enhanced and a plain (machine-roughened) reference surface. The test surfaces, 1-cm~2 flat copper blocks in the horizontal, upward facing orientation, were immersed in FC-72. The test conditions included an absolute pressure range of 30―150 kPa, a liquid subcooling range of 0 (saturation) to 50 K, and both gas-saturated and pure subcooling conditions. Effects of these parameters on nucleate boiling and critical heat flux (CHF) were investigated. Results showed that, in general, the effects of pressure and subcooling on both nucleate boiling and CHF were consistent with the prevailing trends in the literature. For the present heater geometry, the effects of dissolved gas on the boiling performance were generally small, however, as the dissolved gas content increased (through either increased pressure or subcooling) more of the nucleate boiling curve was affected (enhanced). The enhancement of CHF from increased liquid subcooling was greater for the microporous surface than the plain surface. Correlations for both nucleate boiling and CHF were also presented.
机译:本研究是压力,过冷和不凝性气体(空气)对微孔增强和普通(机械粗糙)参考表面池核沸腾传热性能影响的实验研究。将测试表面(水平方向朝上的1-cm〜2扁平铜块)浸入FC-72中。测试条件包括30-150 kPa的绝对压力范围,0(饱和)至50 K的液体过冷范围,以及气体饱和和纯过冷条件。研究了这些参数对成核沸腾和临界热通量(CHF)的影响。结果表明,总的来说,压力和过冷对核沸腾和CHF的影响均与文献中流行的趋势一致。对于当前的加热器几何形状,溶解气体对沸腾性能的影响通常很小,但是,随着溶解气体含量增加(通过增加压力或过冷),更多的成核沸腾曲线受到影响(增强)。对于微孔表面而言,增加的液体过冷会增加CHF的强度,而不是使表面平坦。还提出了核沸腾和CHF的相关性。

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