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首页> 外文期刊>International Journal of Multiphase Flow >Elongated bubbles in microchannels. Part 1: Experimental study and modeling of elongated bubble velocity
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Elongated bubbles in microchannels. Part 1: Experimental study and modeling of elongated bubble velocity

机译:微通道中的气泡延长。第1部分:拉长气泡速度的实验研究和建模

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摘要

The velocity of elongated vapor bubbles exiting two horizontal micro-evaporator channels with refrigerant R-134a was studied. Experiments with tube diameters of 509 and 790 pm, mass velocities from 200 to 1500 kg/m(2) s, vapor qualities from 2% to 19% and a nominal saturation temperature of 30 degrees C were analyzed with a fast, high-definition digital video camera. It was found from image processing of numerous videos that the elongated bubble velocity relative to that of homogeneous flow increased with increasing bubble length until a plateau was reached, and also increased with increasing channel diameter and increasing mass velocity. Furthermore an analytical model developed for adiabatic two-phase flow, has been proposed that is able to predict these trends. In addition, the model shows that the relative elongated bubble velocity should decrease with increasing pressure, which is consistent with the physics of two-phase flow. (C) 2007 Elsevier Ltd. All rights reserved.
机译:研究了使用制冷剂R-134a离开两个水平微蒸发器通道的细长气泡的速度。通过快速,高清晰度的分析,分析了直径为509和790 pm,质量速度为200至1500 kg / m(2)s,蒸汽质量为2%至19%,标称饱和温度为30摄氏度的实验数码摄像机。从大量视频的图像处理中发现,相对于均匀流的细长气泡速度随着气泡长度的增加而增加,直到达到平稳状态,并且还随着通道直径的增加和质量速度的增加而增加。此外,已经提出了为绝热两相流开发的分析模型,该模型能够预测这些趋势。此外,该模型表明,相对拉长的气泡速度应随着压力的增加而减小,这与两相流的物理性质是一致的。 (C)2007 Elsevier Ltd.保留所有权利。

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