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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Characteristics of the Liquid Film and Pressure Drop in Horizontal,Annular,Two-phase Flow Through Round,Square and Triangular Tubes
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Characteristics of the Liquid Film and Pressure Drop in Horizontal,Annular,Two-phase Flow Through Round,Square and Triangular Tubes

机译:圆管,方管和三角管的水平,环形,两相流中的液膜特性和压降

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A unique set of liquid film thickness and pressure drop data has been obtained for horizontal,annular flow of air and water through round,square and triangular tube using a noninvasive,optical liquid film thickness measurement system.In the square and triangular tubes,the liquid film was thinned in the corners,indicating an effect of turbulent secondary flows in these geometries.In addition,when the film thickness is nondimen-sionalized using a friction velocity based on the total pressure drop,it is found that virtually all the data lie below h~+=35 and that dryout occurs at approximately h~+=5.The two-phase friction factor for the annular flows examined in all the tubes can be correlated using the Lockhart-Martinelli parameter,X_tt,when adjustments are made for the hydraulic diameters of the nonround tubes.
机译:使用无创的光学液膜厚度测量系统,获得了一组独特的液膜厚度和压降数据,用于水平和环形的空气和水通过圆管,方管和三角管的流动。在方管和三角管中,液体薄膜在角落变薄,表明在这些几何形状中产生了湍流。此外,当使用基于总压降的摩擦速度来对薄膜厚度进行二维化处理时,发现实际上所有数据都在下面h〜+ = 35,并且变干发生在大约h〜+ = 5时。使用Lockhart-Martinelli参数X_tt对所有管中检测到的环形流动的两相摩擦系数进行相关调整。非圆管的水力直径。

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