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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Extremely pulsatile flow around a surface-mounted hemisphere: synergistic experiments and simulations
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Extremely pulsatile flow around a surface-mounted hemisphere: synergistic experiments and simulations

机译:APS-000TH流体动力学的APS划分年会 - 事件 - 围绕表面悬挂的半球周围的极其脉动流动:协同实验和模拟

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Extremely pulsatile flow (where the amplitude of oscillation pulsation is of the same order as the mean flow) over a three-dimensional, surface-mounted bluff body gives rise a wealth of fluid dynamics phenomena. In this study, we extend our previous experimental work on extremely pulsatile flow around a surface-mounted hemisphere by performing a complementary direct numerical simulation. Results from the experiment and simulation will be presented and compared. After establishing the agreement between experiment and simulation, we will examine the morphology and dynamics of the vortex structures in the wake of the hemisphere, and the effects of extreme pulsatility. The dynamics of the arch-type recirculation vortex is of primary interest, in particular its upstream propagation due to self-induced velocity in the direction opposite to the freestream during deceleration. In addition to the velocity field, the surface pressure field throughout the pulsatile cycle will be presented. These synergistic experiments and simulations provide a detailed view into the complex flow fields associated with pulsatile flow over a surface-mounted hemisphere.
机译:在三维,表面上安装的虚张体中极其脉动流(振动脉动的振幅脉动与平均流量相同的顺序)给出了丰富的流体动力学现象。在这项研究中,通过进行互补的直接数值模拟,我们通过执行互补的直接数值模拟来扩展我们以前的实验工作。实验和模拟结果将呈现和比较。在实验和模拟之间建立协议之后,我们将在半球后检查涡旋结构的形态和动态,以及极度脉冲的影响。拱形再循环涡流的动态是主要的兴趣,特别是由于在减速期间与自由流相反的方向上的自诱导速度,其上游传播。除了速度场之外,将呈现整个脉动循环的表面压力场​​。这些协同实验和仿真在与表面上半球上的脉动流动相关的复杂流场中提供了详细的视图。

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