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Gas-driven thin liquid films: Effect of interfacial shear on the film waviness and convective heat transfer

机译:气体驱动的薄液体膜:界面剪切对膜波纹和对流传热的影响

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摘要

This study is aimed at experimental investigation of hydrodynamics and convective heat transfer in gravity and gas-driven thin liquid wall films. The liquid film has been annularly applied on a vertically aligned heated tube mounted in a flow channel. In the arranged two-phase flow domain, both the liquid film flow and co-current air flow were thermally and hydrodynamically developing. The Reynolds numbers of liquid and gas flows have been varied between 80 - 800 and 10(4) - 10(5), respectively. The wall heat flux was kept constant at 15 W/cm(2). In order to elucidate the effect of the film waviness on the convective heat transfer between the heated wall and the liquid film, the wave frequencies and standard deviations of film thickness have been evaluated by applying high-speed shadowgraphy technique. The wall temperature distribution in streamwise direction has been measured. The experimentally obtained average Nusselt numbers have been compared with the wave frequencies and standard deviations of film thickness. Up to a gas Reynolds number of 4.10(4) and for liquid Reynolds numbers between 80 and 800, the convective heat transfer preliminary depends on the liquid Reynolds number rather than the Reynolds number of the gas flow. For this range, the average Nusselt numbers from the gas-driven film experiments are close to those for falling film flows. At the gas Reynolds numbers starting from 7.10(4), significant heat transfer enhancement with the gas flow has been registered over the full range of liquid Reynolds number.
机译:本研究旨在实验研究重力和气体驱动薄液体膜中流体动力学和对流传热的实验研究。液体膜已经环形地施加在安装在流动通道中的垂直对准的加热管上。在布置的两相流动域中,液体膜流量和共流空气流都热和流体动力学显影。液体和气体流量的雷诺数分别在80-800和10(4) - 10(5)之间变化。壁热通量保持在15w / cm(2)中保持恒定。为了阐明膜波纹对加热壁和液体膜之间的对流传热的影响,通过施加高速影像技术评估了波频和膜厚度的标准偏差。已经测量了流动方向上的壁温分布。将实验获得的平均营养数与膜厚度的波频和标准偏差进行了比较。在80(4)和80和800之间的液体雷诺数的气体雷诺数,对流传热初步取决于液体雷诺数而不是气流的雷诺数。对于该范围,来自气体驱动的薄膜实验的平均冲泡数与落叶薄膜流动的平均篮板。在从7.10(4)开始的气体雷诺数,在全系列液体雷诺数中注册了与气流的显着传热增强。

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