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Transient buoyancy-driven front dynamics in nearly horizontal tubes

机译:近似水平管中瞬态浮力驱动的前部动力学

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The interpenetration of light and heavy liquids has been studied in a long tube inclined at small angles alpha to the horizontal. For angles greater than a critical angle alpha(c) (whose value decreases when the density contrast measured by the Atwood number At increases), the velocity of the interpenetration front is controlled by inertia and takes the steady value V-f=k(i)(At gd)(1/2), with k(i)similar or equal to 0.7. At lower angles, the front is initially controlled by inertia, but later limited by viscous effects. The transition occurs at a distance X-fc, which increases indefinitely as alpha increases to alpha(c). Once the viscous effects act, the velocity of the front decreases in time to a steady value V-f(infinity) which is proportional to sin alpha. For a horizontal tube in the viscous regime, the velocity of the front decreases to zero as t(-1/2). At the same time, the profile of the interface h(x,t) only depends on the reduced variable x/t(1/2). A quasi-unidirectional model reproduces well the variation of the velocity of the front and the profiles of the interface, both in inclined and horizontal tubes. In the inclined tube, the velocity of the front is determined by matching rarefaction waves to a shock wave. (c) 2007 American Institute of Physics.
机译:轻质和重质液体的互穿已经在长管中进行了研究,该长管与水平方向成小角度α。对于大于临界角alpha(c)的角度(当通过阿特伍德数At测量的密度对比度增加时其值减小),互穿锋线的速度由惯性控制,并取稳定值Vf = k(i)(在gd)(1/2)处,k(i)近似或等于0.7。在较小的角度下,前部最初是由惯性控制的,但后来受到粘性作用的限制。过渡发生在距离X-fc处,该距离随着alpha增大到alpha(c)无限增加。一旦粘性效应起作用,前部的速度就会随时间减小到一个稳定值V-f(infinity),该值与sin alpha成正比。对于处于粘性状态的水平管,其前部速度随着t(-1/2)减小为零。同时,接口h(x,t)的轮廓仅取决于减小的变量x / t(1/2)。准单向模型很好地再现了倾斜管和水平管中前部速度和界面轮廓的变化。在倾斜管中,通过将稀疏波与冲击波匹配来确定前部的速度。 (c)2007年美国物理研究所。

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