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Experimental study on air-water countercurrent flow limitation in a vertical tube based on measurement of film thickness behavior

机译:基于薄膜厚度行为测量的垂直管空气逆流流动限制试验研究

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摘要

The gas-liquid counter-current flow limitation (CCFL) is closely related to efficient and safety operation of many equipment in industrial cycle. Air-water countercurrent flow experiments were performed in a tube with diameter of 25?mm to understand the triggering mechanism of CCFL. A parallel electrode probe was utilized to measure film thickness whereby the time domain and frequency domain characteristics of liquid film was obtained. The amplitude of the interface wave is small at low liquid flow rate while it becomes large at high liquid flow rate after being disturbed by the airflow. The spectral characteristic curve shows a peak-shaped distribution. The crest exists between 0 and 10?Hz and the amplitude decreases with the frequency increase. The analysis of visual observation and characteristic of film thickness indicate that two flooding mechanisms were identified at low and high liquid flow rate, respectively. At low liquid flow rate, the interfacial waves upward propagation is responsible for the formation of CCFL onset. While flooding at high liquid flow rate takes place as a direct consequence of the liquid bridging in tube due to the turbulent flow pattern. Moreover, it is believed that there is a transition region between the low and high liquid flow rate.
机译:气液逆流流量限制(CCFL)与工业循环中许多设备的有效和安全操作密切相关。在具有25Ωmm的管中进行空气 - 水逆流流动实验,以了解CCFL的触发机制。平行电极探针用于测量膜厚度,由此获得液体膜的时域和频域特性。界面波的幅度在低液体流速下小,而在受气流受到扰乱之后,在高液体流速下变大。光谱特性曲线表示峰值形状分布。峰值在0到10°之间存在,并且幅度随频率增加而减小。薄膜厚度的视觉观察和特征分别表示两种溢流机构分别以低液体流速鉴定。在低液体流速下,界面波向上传播是负责形成CCFL发作的。在高液体流动速率下溢出作为由于湍流模式引起的液体桥接的直接后果。此外,据信在低液体流速之间存在过渡区域。

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