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Adaptive panel representation for oblique collision of two vortex rings

机译:两个涡流环斜向碰撞的自适应面板表示

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摘要

In this article, we use a hierarchical panel method for representing vortex sheet surface motion in 3D flow to investigate the oblique collision of two vortex rings. The particles representing the sheet are advected by a regularized Biot-Savart integral with smoothed Rosenhead-Moore kernel. The particle velocities are evaluated by an adaptive treecode algorithm based on Taylor expansions in Cartesian coordinates. The method allowed us to consider late stages of a vortex rings collision, producing a funnel region. Vorticity iso-surfaces evolution is also investigated.
机译:在本文中,我们使用分层面板方法表示3D流中的涡流片表面运动,以研究两个涡流环的倾斜碰撞。代表薄片的颗粒通过带有光滑Rosenhead-Moore核的正则化Biot-Savart积分平移。基于笛卡尔坐标中的泰勒展开,通过自适应树码算法评估粒子速度。该方法使我们可以考虑漩涡环碰撞的后期,从而产生漏斗区域。还研究了涡度等值面演变。

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