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Assessment of body force effects in flow condensation Part I: Experimental investigation of liquid film behavior for different orientations

机译:流动冷凝中体力效应的评估第一部分:不同方向的液膜行为的实验研究

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摘要

Body force effects in flow condensation vary depending on channel orientation and fluid mass velocity, making the design of systems intended to operate in multiple orientations more complicated than those at a fixed orientation. This study examines the effects of body force on liquid film development for flow condensation of FC-72 in horizontal, vertical upflow, and vertical downflow orientations. Two test sections are utilized, one capable of providing high-speed imaging of liquid film development, and the other designed to allow detailed measurements of flow condensation heat transfer coefficient. High speed imaging shows that for low FC-72 mass velocities, flow regimes differ significantly among the three orientations, with vertical upflow exhibiting falling film behavior, horizontal flow showing stratification, and vertical downflow displaying annular co-current flow. For the case of low mass velocity horizontal flow, interfacial disturbances in the form of a sinusoidal wave are clearly visible with wavelengths on the order of 1–10 mm. As mass velocity is increased, the liquid film is seen to exhibit similar behavior for all three orientations due to interfacial shear stress negating body force effects. Heat transfer measurements reinforce these trends, with circumferential variations in heat transfer coefficient present for horizontal flow at low mass velocities, and differences in the axial variations in heat transfer coefficient seen when comparing vertical upflow to vertical downflow. As mass velocity is increased, differences in heat transfer coefficient are reduced, with the highest mass velocities exhibiting almost no variation with orientation. This convergence of values indicates the ability of interfacial shear stress to mitigate body force effects at sufficiently high mass velocities.
机译:流凝结中的体力效应取决于通道方向和流体质量速度而变化,这使得打算在多个方向上运行的系统的设计比在固定方向上运行的系统更为复杂。这项研究检查了FC-72在水平,垂直向上和垂直向下流动方向上的凝结作用对液膜显影的作用力。使用了两个测试部分,一个可以提供液膜显影的高速成像,另一个被设计为可以详细测量流动冷凝传热系数。高速成像显示,对于较低的FC-72质量速度,三个方向之间的流动方式显着不同,垂直向上流动显示降膜行为,水平向上流动显示分层,垂直向下流动显示环形并流。对于低质量速度水平流,在波长为1–10 mm的情况下,可以清楚地看到正弦波形式的界面干扰。随着质量速度的增加,由于界面剪切应力消除了体力的影响,液膜在所有三个方向上都表现出相似的行为。传热测量加强了这些趋势,在低质量速度下水平流动的传热系数在圆周方向上存在变化,并且在将垂直向上流动与垂直向下流动进行比较时发现传热系数的轴向变化存在差异。随着质量速度的增加,传热系数的差异减小,最高质量速度几乎不随方向变化。值的这种收敛表明界面剪切应力在足够高的质量速度下减轻体力影响的能力。

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