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Direct Numerical Simulation Study of Hydrodynamic Interactions between Immersed Solids and Wall During Flow

机译:流动过程中沉浸固体与壁体之间的水动力相互作用的直接数值模拟研究

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This work reports a direct numerical simulation study on submerged-solid and fluid flows, using a novel variant of the immersed boundary method under the aegis of Gerris solver. The method handles three-dimensional 6 degree-of-freedom motion of immersed solids of any number and of any shape under the influence of flow. We use it here to study the hydrodynamic interactions (between solid-wall and between soids) in a constant shear flow at low Reynolds number. The study calculates the influence from the solid- wall distance, solid-solid distance and ellipsoid geometrical characteristics. Distinct patterns emerge and the discussion focusses on improving our current understanding on solid migration due hydrodynamic interaction.
机译:这项工作报告了在Gerris求解器的支持下使用沉浸边界方法的新变体对浸没固体和流体流动进行的直接数值模拟研究。该方法处理在流动影响下任何数量和任何形状的浸没固体的三维6自由度运动。我们在这里使用它来研究低雷诺数下恒定剪切流中的流体动力相互作用(固体壁之间和固体之间)。该研究通过实心壁距离,实心-实心距离和椭圆形几何特征来计算影响。出现了不同的模式,讨论的重点是提高我们目前对由于水动力相互作用而产生的固体迁移的理解。

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