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A high-order upwind control-volume method based on integrated RBFs for fluid-flow problems

机译:基于集成RBF的高阶迎风量控制方法

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摘要

This paper is concerned with the development of a high-order upwind conservative discretization method for the simulation of flows of a Newtonian fluid in two dimensions. The fluid-flow domain is discretized using a Cartesian grid from which non-overlapping rectangular control volumes are formed. Line integrals arising from the integration of the diffusion and convection terms over control volumes are evaluated using the middle-point rule. One-dimensional integrated radial basis function schemes using the multiquadric basis function are employed to represent the variations of the field variables along the grid lines. The convection term is effectively treated using an upwind scheme with the deferred-correction strategy. Several highly non-linear test problems governed by the Burgers and the Navier–Stokes equations are simulated, which show that the proposed technique is stable, accurate and converges well.
机译:本文涉及一种用于模拟二维牛顿流体流动的高阶迎风保守离散化方法的发展。流体流动域使用笛卡尔网格离散化,由此形成非重叠的矩形控制体积。使用中点规则评估在控制体积上对扩散项和对流项的积分所产生的线积分。使用使用多二次基函数的一维集成径向基函数方案来表示场变量沿网格线的变化。对流项可以使用带有递延校正策略的迎风方案进行有效处理。仿真了由Burgers和Navier-Stokes方程控制的几个高度非线性的测试问题,表明所提出的技术稳定,准确并且收敛良好。

著录项

  • 作者

    Mai-Duy N.; Tran-Cong T.;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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