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Efficient Adaptive Cartesian Vorticity Transport Solver for Vortex-Dominated Flows

机译:涡流主导的高效自适应笛卡尔涡度传输求解器

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摘要

An efficient solver for the velocity-vorticity form of the Navier-Stokes equations on adaptive Cartesian grids is presented. The excessive numerical dissipation common to most grid-based Navier-Stokes solvers is avoided by solving the fluid dynamic equations in vorticity conservation form. Additionally, an adaptive Cartesian solver is employed to efficiently capture and preserve vorticity on-the-fly as the flow develops. For practical purposes, this solver would be used in the wake region and coupled with a full Navier-Stokes solver in the near-body region, thus allowing vorticity to be accurately generated and then convected in the wake region with minimal dissipation. The adaptive Cartesian framework allows for the rapid evaluation of the velocity field using a fast-summation technique based on the Cartesian Treecode method. The implementations of both the solution algorithm and velocity calculation are described in detail. Results are presented for vortex convection applications that show good agreement with the analytical solution, and the accuracy of the scheme is verified numerically using a series of increasingly fine grids. Additionally, fully three-dimensional flow in the presence of a vortex ring is investigated and results are shown to be in very close agreement with published data.
机译:针对自适应笛卡尔网格上Navier-Stokes方程的速度涡度形式,提出了一种有效的求解器。通过以涡度守恒形式求解流体动力学方程,可以避免大多数基于网格的Navier-Stokes求解器所共有的过大的数值耗散。此外,采用自适应笛卡尔解算器可有效捕获并随流动发展动态地保留涡度。出于实际目的,此求解器将在尾流区域中使用,并在近身区域中与完整的Navier-Stokes求解器耦合,从而可以精确地产生涡流,然后以最小的耗散在尾流区域对流。自适应笛卡尔框架允许使用基于笛卡尔树码方法的快速求和技术快速评估速度场。详细描述了求解算法和速度计算的实现。给出了涡流对流应用的结果,该结果与解析解显示出很好的一致性,并且使用一系列越来越精细的网格对方案的准确性进行了数值验证。此外,研究了存在涡流环的全三维流动,并显示结果与公开数据非常吻合。

著录项

  • 来源
    《AIAA Journal》 |2010年第9期|p.2157-2164|共8页
  • 作者单位

    CFD Research Corporation, Huntsville, Alabama 35805;

    rnCFD Research Corporation, Huntsville, Alabama 35805;

    CFD Research Corporation, Huntsville, Alabama 35805;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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