论文标题

Stokes边界层对振荡流中粒子对动力学的影响

The effect of the Stokes boundary layer on the dynamics of particle pairs in an oscillatory flow

论文作者

van Overveld, T. J. J. M., Breugem, W. -P., Clercx, H. J. H., Duran-Matute, M.

论文摘要

垂直于水平振荡流的一对球形颗粒的比对归因于非零残留流,称为稳定流。这种现象是密集的系统中复杂模式的基础,例如粒子链和滚动晶状纹波的初始阶段。先前对此类自组织过程的研究使用了两个不同的系统:一个充满粘性流体的振荡盒和一个振荡的通道流,其中流体相对于底部边界振荡。在本文中,我们表明这两个系统中的粒子对动力学在根本上是不同的,这是由于振荡通道流中底部上方的Stokes边界层的存在。结果是从直接数值模拟中获得的,其中使用沉浸式边界方法模拟一对粒子的动力学。振荡框和振荡通道流仅在参数空间的有限区域中等效,其中归一化的Stokes边界层厚度和归一化的相对粒子偏移长度很小。总体而言,与振荡框相比,振荡通道流中的粒子动力学受额外的无量纲参数的控制。

The alignment of a pair of spherical particles perpendicular to a horizontally oscillating flow is attributed to a non-zero residual flow, known as steady streaming. This phenomenon is the basis of complex patterns in denser systems, such as particle chains and the initial stages of rolling-grain ripples. Previous studies on such self-organization processes used two distinct systems: an oscillating box filled with viscous fluid and an oscillating channel flow, where the fluid oscillates relative to the bottom boundary. In this paper, we show that particle pair dynamics in these two systems are fundamentally different, due to the presence of a Stokes boundary layer above the bottom in the oscillating channel flow. The results are obtained from direct numerical simulations in which the dynamics of a pair of particles are simulated using an immersed boundary method. The oscillating box and the oscillating channel flow are only equivalent in a limited region of the parameter space, where both the normalized Stokes boundary layer thickness and the normalized relative particle excursion length are small. Overall, the particle dynamics in the oscillating channel flow, compared to the oscillating box, are governed by an additional dimensionless parameter.

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