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Stratified laminar flows in a circular pipe: New analytical solutions in terms of elementary functions

机译:圆形管道中的分层层流:基于基本函数的新分析解决方案

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Laminar stratified two-phase flows in circular pipes are studied. Under the assumption that the wall-liquid wettability properties of the phases are identical, new exact analytical solutions in terms of elementary functions are constructed. The solutions satisfy the Navier–Stokes equations exactly in fluids and the boundary conditions on the pipe walls and the interface for the two cases: the pipe is horizontal and the capillarity forces dominate the gravity ones, the pipe is inclined and the volumetric quantities of liquids in the pipe are the same. For the second case, the capillarity and gravity forces can be arbitrary, but if the gravity forces dominate the capillarity ones, the assumption about the equal wall-liquid tensions of the phases can be withdrawn.
机译:研究了圆形管道中的层流分层两相流。在假设相的壁-液体润湿性相同的前提下,构建了基于基本函数的新的精确解析解。这些解决方案完全满足流体中的Navier–Stokes方程以及两种情况下管壁和界面的边界条件:管是水平的,毛细力主导重力,管是倾斜的,并且液体的体积量在管子里都一样。对于第二种情况,毛细作用力和重力可以是任意的,但是如果重力主导毛细作用力,则可以撤消有关相的相等壁-液张力的假设。

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