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首页> 外文期刊>International Communications in Heat and Mass Transfer >OSCILLATING MOTIONS OF SLUG FLOW IN CAPILLARY TUBES
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OSCILLATING MOTIONS OF SLUG FLOW IN CAPILLARY TUBES

机译:毛细管中团状流的振荡运动

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A mathematical model describing the oscillation characteristics of slug flow in a capillary tube is presented. The model considers the vapor bubble as the gas spring for the oscillating motions in a capillary tube including effects of capillary force, gas spring constant, dimensions, gravitational force, and initial pressure distribution of the working fluid. Numerical results indicate that the isentropic bulk modulus generates stronger oscillations than the isothermal bulk modulus. While it demonstrates that the capillary tube diameter, bubble size, and unit cell numbers determine the oscillation, the capillary force, gravitational force, and initial pressure distribution of the working fluid significantly affect the frequency and amplitude of oscillating motion in the capillary tube.
机译:建立了描述毛细管中团状流的振荡特性的数学模型。该模型将蒸气气泡视为毛细管中的振荡运动的气体弹簧,包括毛细管力,气体弹簧常数,尺寸,重力和工作流体的初始压力分布的影响。数值结果表明,等熵体积模量比等温体积模量产生更强的振荡。尽管它证明了毛细管的直径,气泡大小和晶胞数决定了振荡,但是毛细管压力,重力和工作流体的初始压力分布会显着影响毛细管中振荡运动的频率和幅度。

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