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Experimental Investigation of Capillary-Driven Two-Phase Flow in Water/Butanol under Reduced Gravity Conditions

机译:重力作用下水/丁醇中毛细管驱动两相流的实验研究

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The capillary flow of water/butanol mixture is investigated in a single groove heat pipe model on board the Airbus A310 'Zero-G' of the European Space Agency. As working fluid for evaporation-based heat transfer devices like conventional or pulsating heat pipes, these kinds of mixtures give more stable behaviour and higher dry-out limit with respect to pure water because of an anomalous behaviour of the surface tension with temperature. The groove is embedded in a semi-transparent test cell that allows for the qualitative visualization of the liquid distribution along the channel and is heated and cooled at two opposite sides with an electrical resistance and a water circulation system. The evaporation/condensation process is regulated changing the power input in a range between 5 and 30 W and the liquid distribution is detected from a top window using a CCD camera and a LED illumination device. The results show that the liquid distribution is affected by the gravity level and this effect is normally masked on ground.
机译:在欧洲航天局的空客A310'Zero-G'上的单槽热管模型中研究了水/丁醇混合物的毛细流动。作为用于诸如传统或脉动热管之类的基于蒸发的传热装置的工作流体,由于表面张力随温度的异常行为,这些类型的混合物相对于纯水具有更稳定的性能和更高的干燥极限。凹槽嵌入半透明的测试单元中,可以对沿通道的液体分布进行定性观察,并在两个相对的侧面通过电阻和水循环系统进行加热和冷却。调节蒸发/冷凝过程,改变输入功率在5至30 W之间,并使用CCD摄像机和LED照明设备从顶部窗口检测液体分布。结果表明,液体分布受重力水平的影响,这种影响通常在地面上被掩盖。

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