首页> 外文会议>ASME Fluids Engineering Division summer meeting >NUMERICAL STUDY OF THE FLOW STRUCTURE AND TRANSPORT IN A TWO-DIMENSIONAL CHANNEL WITH OSCILLATING PERIODIC CAVITIES AND A BOUNDING TOP WALL
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NUMERICAL STUDY OF THE FLOW STRUCTURE AND TRANSPORT IN A TWO-DIMENSIONAL CHANNEL WITH OSCILLATING PERIODIC CAVITIES AND A BOUNDING TOP WALL

机译:周期腔和有界顶壁二维通道内流动结构和传输的数值研究

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The dynamics of the flow in a two-dimensional channel with an arrangement of periodic cavities in an oscillating lower bounding wall and a confining top wall is studied numerically in this paper. The open-source CFD code, OpenFOAM v.2.2.2, based on the Finite Volume method is used to solve the problem. The flow dynamics is studied with respect to variations in the location of the confining top wall (non-dimensionalized with the Stokes layer thickness z/δ), cavity-size-based Reynolds Number (Re_d) and the ratio of the Stokes Layer Thickness to the Cavity Size (δ/d). This is an extension of work done for a previous paper [20]. The evolution and transport of vortex structures in the vicinity of the are presented over the oscillation cycle time by means of instantaneous streamline plots. The effect of the location of the confining top wall on the flow structure is presented in some detail by comparison of the evolution of the streamlines to a case where the top wall is absent. The transfer of fluid mass in and out of the cavity is shown to be strongly dependent on the Re_d and the z/δ(for the same Re_d, smaller the z/δ, lower is the mass transfer efficiency).
机译:数值研究了在振荡的下边界壁和封闭的顶壁中具有周期性空腔的二维通道中的流动动力学。基于有限体积方法的开源CFD代码OpenFOAM v.2.2.2用于解决该问题。研究了围壁顶壁位置的变化(未用斯托克斯层厚度z /δ进行量纲化),基于腔尺寸的雷诺数(Re_d)以及斯托克斯层厚度与壁厚之比的流动动力学。腔体尺寸(δ/ d)。这是对先前论文[20]所做工作的扩展。通过瞬时流线图显示了在振荡周期内涡旋附近的涡旋结构的演化和传输。通过将流线的演变与不存在顶壁的情况进行比较,可以更详细地显示约束顶壁的位置对流动结构的影响。流体质量进出腔体的过程在很大程度上取决于Re_d和z /δ(对于相同的Re_d,z /δ越小,传质效率越低)。

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