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HEAT TRANSFER DEVICES WITH SELF-REWETTING FLUIDS

机译:带有自回流流体的传热设备

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摘要

The authors have been proposing the utilization of "self-rewetting fluids" as a new phase change heat transfer media, especially in space applications. Self-rewetting fluids show a quite unique thermophysical behavior- an increase in the surface tension with increasing temperature. Since self-rewetting fluids are non-azeotropic compositions of dilute aqueous solutions of alcohols, the Marangoni effects due to both temperature gradient and concentration gradient work in the same direction in the course of liquid/vapor phase change, and induce a strong liquid flow to hotter interface. A series of terrestrial experiments for conventional heat pipes with self-rewetting fluids have been conducted, and compared with those with water as a reference. Appreciable heat transfer performance improvement from water heat pipes was recognized. Furthermore, a series of low gravity experiments for wickless heat pipes with a self-rewetting fluid have also been conducted by using parabolic flights of aircraft. The heat transfer performance of wickless heat pipes in low gravity was evaluated, and superior characteristics was confirmed.
机译:作者一直在提议将“自粘性流体”用作一种新的相变传热介质,特别是在空间应用中。自润湿液体表现出非常独特的热物理行为-表面张力随温度升高而增加。由于自润湿液体是醇的稀水溶液的非共沸组成,因此温度梯度和浓度梯度引起的马兰戈尼效应在液相/汽相变化的过程中沿相同方向起作用,并引起强烈的液​​体流向。界面更热。对于具有自粘性液体的常规热管,已经进行了一系列地面实验,并与以水为参考的热管进行了比较。公认水热管的传热性能明显改善。此外,还通过使用飞机的抛物线飞行,对具有自粘性流体的无芯热管进行了一系列低重力实验。评价了无芯热管在低重力下的传热性能,并确认了优异的特性。

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