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首页> 外文期刊>Journal of Chemical Engineering of Japan >NUMERICAL FLOW ANALYSIS OF PULSATILE FLOW IN A CHANNEL WITH SYMMETRIC WAVY WALLS IN STOKES FLOW REGIME
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NUMERICAL FLOW ANALYSIS OF PULSATILE FLOW IN A CHANNEL WITH SYMMETRIC WAVY WALLS IN STOKES FLOW REGIME

机译:斯托克斯流程中对称波浪壁通道中脉动的数值流分析

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摘要

References(7) Cited-By(7) A numerical analysis of pulsatile flow in a wavy channel with periodically converging-diverging cross sections was performed by the finite element method. The present treatment was limited to the Stokes flow regime, and the effects of Womersley number and amplitude coefficient of flow rate oscillation on the flow behavior and wall vorticity were studied. As the Womersley number increases, the flow pattern departs from the quasi-steady state. A circulation vortex occurs during the deceleration phase and the vortex behavior is dependent on both the Womersley number and the amplitude coefficient of flow rate oscillation. The dynamic response of the wall vorticity to the flow rate is dependent on the Womersley number only. The amplitude ratio and the phase difference vary sharply along the wavy wall, and these minimum and maximum values appear at the minimum cross section and near the maximum cross section of the channel, respectively.
机译:参考文献(7)引用了(7)通过有限元方法对具有周期性收敛-发散横截面的波浪通道中的脉动流进行了数值分析。目前的处理仅限于斯托克斯流态,并研究了沃默斯利数和流速振荡幅度系数对流动行为和壁涡度的影响。随着Womersley数的增加,流型偏离准稳态。在减速阶段会发生循环涡旋,其涡旋行为既取决于沃默斯利数,又取决于流速振荡的振幅系数。壁涡对流量的动态响应仅取决于沃默斯利数。振幅比和相位差沿波状壁急剧变化,这些最小值和最大值分别出现在通道的最小横截面和最大横截面附近。

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