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EXPERIMENTAL STUDY OF OSCILLATORY FLOW CHARACTERISTICS OF GAS-LIQUID TWO-PHASE FLOW

机译:气液两相流振荡流动特性的实验研究

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摘要

The oscillatory flow characteristics of the gas-liquid two-phase flow are thoroughly studied through visualization experiments. The results show that the oscillatory motion of the gas-liquid two-phase flow obeys specific rules not only in the primary oscillation stage but also in the full oscillation stage. The bubble state and turbulence intensity of the oscillatory two-phase flow are mainly affected by oscillation frequency; otherwise, the flow pattern and movement rule of the oscillatory two-phase flow are mainly affected by the water filling ratio. Both oscillation frequency and water filling ratio have significant effects on the duration and the maximum bubble size in the primary oscillation stage. The effects of oscillation frequency on bubble size and mixing ratio in the full oscillation stage are higher than those of the water filling ratio. The mixing degree of two phases is supreme in the case of low water filling ratio and high oscillation frequency.
机译:通过可视化实验彻底研究了气液两相流的振荡流动特性。 结果表明,气液两相流的振荡运动不仅在主振荡阶段的特定规则,而且在全振荡阶段。 振荡两相流的气泡状态和湍流强度主要受振荡频率的影响; 否则,振荡两相流的流动模式和移动规则主要受水填充率的影响。 振荡频率和水填充率都对主振荡阶段的持续时间和最大气泡尺寸具有显着影响。 振荡频率对全振荡阶段中的气泡尺寸和混合比的影响高于水填充比的影响。 在低水填充比和高振荡频率的情况下,两相的混合度至至高无上。

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