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EFFECTS OF CHANNEL LENGTH ON GAS-LIQUID TWO-PHASE FLOW PHENOMENA IN A MICROCHANNEL

机译:通道长度对微通道中气液两相流现象的影响

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An optical measurement system was used to investigate the effect of microchannel length on the characteristics of adiabatic gas-liquid two-phase flow. Experiments were conducted with a 1,676 mm long, circular microchannel with an inner diameter of 100 μm. Two-phase flow patterns, void fraction and velocities of gas plug/slug and liquid slugs were measured at different locations between the gas-liquid mixer and channel exit. The experimental values of the mean void fraction and the mean velocity of liquid slug agreed well with the homogeneous flow model predictions when the liquid flow rate was constant and the mass velocity of the gas was low. The flow pattern transition from slug flow to ring film flow was observed when the mass velocity of the gas was increased while the liquid flow rate was kept constant.
机译:光学测量系统用于研究微通道长度对绝热气液两相流的特性的影响。实验用1,676mm长的圆形微通道进行,内径为100μm。在气液混合器和通道出口之间的不同位置测量两相流动图案,空气塞/块和液体块的速度。当液体流速恒定时,平均空隙率和液体块的平均速度的实验值与均匀的流量模型预测相同,并且气体的质量速度低。当液体流速保持恒定的同时增加气体的质量速度时,观察到从块流到环膜流动的流动模式转变。

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