首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Vortex Particle-Mesh method for flows past bodies: a comparison of the iterative penalization and immersed interface methods.
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Vortex Particle-Mesh method for flows past bodies: a comparison of the iterative penalization and immersed interface methods.

机译:APS-APS流体动力学分部第70届年会-事件-涡流-流经物体的网格方法:迭代惩罚与沉浸式界面方法的比较。

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The Vortex Particle-Mesh (VPM) method is well suited for solving advection dominated incompressible flows. However, the efficient and accurate handling of solid boundaries in this method still constitutes an active domain of research. The boundary enforcement conditions the vorticity production at the wall and is thus paramount to the accuracy of the global method.We here focus on two iterative algorithms: the iterative penalization method and the immersed interface method. The iterative penalization uses a mask function over the grid and is therefore quite straightforward to use as it simply adds a penalization sub-step to the time step, already implemented in a body-free method. On the contrary, the immersed interface method uses an interface detection and modification of the numerical scheme for points near the interface. This preserves the order of accuracy up to the boundary, yet it increases the implementation efforts.We compare these two techniques on the benchmark of the flow past an impulsively started cylinder at Re$=$9500. We analyze the solutions of both methods, their accuracy up to the boundary and the related cost.
机译:涡流粒子网(VPM)方法非常适合求解以对流为主的不可压缩流。但是,这种方法对实体边界的有效而准确的处理仍然构成了一个活跃的研究领域。边界强制条件限制了壁面的涡度产生,因此对于整体方法的准确性至关重要。在此,我们着重讨论两种迭代算法:迭代惩罚方法和沉浸接口方法。迭代惩罚在网格上使用掩码函数,因此使用起来非常简单,因为它只是将惩罚子步骤添加到了时间步骤中,而该步骤已经以无主体方法实现了。相反,沉浸式界面方法对界面附近的点使用界面检测和数值方案的修改。这样可以保持精度到边界的顺序,但会增加实现工作量。我们在流经脉冲启动圆柱体(Re $ = $ 9500)的流量基准上比较了这两种技术。我们分析了这两种方法的解决方案,以及它们的精确度以及相关成本。

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