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首页> 外文期刊>Journal of Fluid Mechanics >STOKES FLOW IN COLLAPSIBLE TUBES - COMPUTATION AND EXPERIMENT
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STOKES FLOW IN COLLAPSIBLE TUBES - COMPUTATION AND EXPERIMENT

机译:圆管在可折叠管中的流动-计算和实验

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This paper is concerned with the problem of viscous flow in an elastic tube. Elastic tubes collapse (buckle non-axisymmetrically) when the transmural pressure (internal minus external pressure) falls below a critical value, The tube's large deformation during the buckling leads to a strong interaction between the fluid and solid mechanics. In this study, the steady three-dimensional Stokes equations are used to analyse the slow viscous flow in such a tube whose deformation is described by geometrically nonlinear shell theory. Finite element methods are used to solve the large-displacement fluid-structure interaction problem. Typical wall deformations and flow fields in the strongly collapsed tube are shown. Extensive parameter studies illustrate the tube's flow characteristics (e.g. volume flux as a function of the applied pressure drop through the tube) for boundary conditions corresponding to the four fundamental experimental setups, It is shown that lubrication theory provides an excellent approximation of the fluid traction while being computationally much less expensive than the solution of the full Stokes equations. Finally, the computational predictions for the flow characteristics and the wall deformation are compared to the results obtained from an experiment. [References: 27]
机译:本文涉及弹性管中的粘性流动问题。当透壁压力(内部减去外部压力)降至临界值以下时,弹性管会塌陷(非轴对称地屈曲)。在屈曲过程中,弹性管的大变形会导致流体力学与固体力学之间发生强烈的相互作用。在这项研究中,使用稳态三维斯托克斯方程来分析这种管中的缓慢粘性流动,这种管的变形由几何非线性壳理论来描述。有限元方法被用来解决大位移流固耦合问题。示出了在严重塌陷的管中典型的壁变形和流场。广泛的参数研究说明了在与四个基本实验设置相对应的边界条件下,管的流动特性(例如,体积通量是所施加的通过管的压降的函数)。结果表明,润滑理论提供了极好的流体牵引力近似值,而在计算上比完整的斯托克斯方程式的解决方案便宜得多。最后,将流动特性和壁变形的计算预测与从实验中获得的结果进行比较。 [参考:27]

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