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Reliable treatments of differential transform method for two-dimensional incompressible viscous flow through slowly expanding or contracting porous walls with small-to-moderate permeability

机译:二维不可压缩粘性流通过小至中等渗透率的缓慢膨胀或收缩多孔壁的可靠处理

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In this article, the problem of laminar, isothermal, incompressible and viscous flow in a rectangular domain bounded by two moving porous walls which enable the fluid to enter or exit during successive expansions or contractions is solved analytically by using the differential transform method (DTM). Graphical results are presented to investigate the influence of the non-dimensional wall dilation rate and seepage Reynolds number on the velocity, normal pressure distribution and wall shear stress. The validity of our solutions is verified by the numerical results obtained by shooting method coupled with Runge–Kutta scheme. Since the transport of biological fluids through contracting or expanding vessels is characterized by low seepage Reynolds numbers, the current study focuses on the viscous flow driven by small wall contractions and expansions of two weakly permeable walls.
机译:在本文中,通过使用差分变换方法(DTM)解析地解决了由两个运动的多孔壁为边界的矩形区域中的层流,等温,不可压缩和粘性流动的问题,这两个多孔壁使流体能够在连续的膨胀或收缩期间进入或流出。 。给出了图形结果,以研究无量纲壁膨胀率和渗流雷诺数对速度,法向压力分布和壁切应力的影响。我们的解决方案的有效性通过结合Runge– Kutta方案的射击方法获得的数值结果得到验证。由于生物流体通过收缩或膨胀血管的运输具有低渗漏雷诺数的特征,因此当前的研究集中在由小壁收缩和两个弱渗透壁的膨胀驱动的粘性流。

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