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INTERFACIAL STABILITY IN VERTICAL SWIRLING ANNULAR TWO-PHASE FLOW

机译:垂直涡旋两相流的界面稳定性

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The linear stability of liquid film flowing upward the inner surface of vertical cylinder under the action of the swirling gas core flow is investigated taking exactly the centrifugal force and curvature of the cylinder into account. Swirl has been considered by superposing a circular movement on the annular flow. The theoretical model of the stability of interface to small perturbation is established by analyzing the normal force balance condition at the wavy interface. The characteristic equation is solved and the stability criterion is obtained. The stability characteristics of neutral, growing and damped modes are presented showing the influences of swirl intensity, relative motion of gas-liquid flow, and the surface tension force. The modeling results indicate that the swirling of the gas phase stabilizes the film flow while the curvature of the cylinder destabilizes it. For strong swirling annular flow, it is found that there is a small influence of surface tension on the stability of interface because the stabilizing centrifugal force is dominant on this condition. The neutral wavelength is found to be very sensitive to the values of swirl intensity and cylinder radius when gas-liquid relative movement is small. However, when gas flow rate is large enough, there is no significant difference in its value.
机译:精确考虑了离心力和圆柱体的曲率,研究了在涡旋气体核心流的作用下,垂直圆柱体的内表面向上流动的液膜的线性稳定性。已经通过将环形运动叠加在环形流上来考虑漩涡。通过分析波浪形界面的法向力平衡条件,建立了界面对小扰动稳定性的理论模型。求解特征方程,得到稳定性判据。给出了中性,增长和阻尼模式的稳定性特征,表明了旋流强度,气液流的相对运动以及表面张力的影响。建模结果表明,气相的涡流使薄膜流稳定,而圆柱体的曲率使薄膜流不稳定。对于强旋流环形流动,发现表面张力对界面的稳定性影响很小,因为在这种情况下稳定的离心力占主导地位。当气液相对运动较小时,发现中性波长对涡旋强度和圆柱半径非常敏感。但是,当气体流量足够大时,其值没有显着差异。

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