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High-resolution simulations of the flow around anudimpulsively started cylinder using vortex methods

机译:高分辨率的模拟流 ud使用涡流方法的脉冲启动气缸

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摘要

The development of a two-dimensional viscous incompressible flow generated from a circular cylinder impulsively started into rectilinear motion is studied computationally. An adaptative numerical scheme, based on vortex methods, is used to integrate the vorticity/velocity formulation of the Navier–Stokes equations for a wide range of Reynolds numbers (Re = 40 to 9500). A novel technique is implemented to resolve diffusion effects and enforce the no-slip boundary condition. The Biot–Savart law is employed to compute the velocities, thus eliminating the need for imposing the far-field boundary conditions. An efficient fast summation algorithm was implemented that allows a large number of computational elements, thus producing unprecedented high-resolution simulations. Results are compared to those from other theoretical, experimental and computational works and the relation between the unsteady vorticity field and the forces experienced by the body is discussed.
机译:通过计算研究了从冲动地开始直线运动的圆柱产生的二维粘性不可压缩流的发展。一种基于涡旋方法的自适应数值方案,用于对宽范围的雷诺数(Re = 40至9500)整合Navier–Stokes方程的涡度/速度公式。实现了一种新颖的技术来解决扩散效应并强制实施防滑边界条件。利用毕奥-萨伐尔定律来计算速度,从而消除了施加远场边界条件的需要。实现了一种高效的快速求和算法,该算法允许大量计算元素,从而产生了前所未有的高分辨率模拟。将结果与其他理论,实验和计算工作的结果进行比较,并讨论了非恒定涡流场与人体承受的力之间的关系。

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  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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