首页> 外文OA文献 >Updates to Multi-Dimensional Flux Reconstruction for Hypersonic Simulations on Tetrahedral Grids
【2h】

Updates to Multi-Dimensional Flux Reconstruction for Hypersonic Simulations on Tetrahedral Grids

机译:四面体网格高超声速模拟多维通量重建的更新。

摘要

The quality of simulated hypersonic stagnation region heating with tetrahedral meshes is investigated by using an updated three-dimensional, upwind reconstruction algorithm for the inviscid flux vector. An earlier implementation of this algorithm provided improved symmetry characteristics on tetrahedral grids compared to conventional reconstruction methods. The original formulation however displayed quantitative differences in heating and shear that were as large as 25% compared to a benchmark, structured-grid solution. The primary cause of this discrepancy is found to be an inherent inconsistency in the formulation of the flux limiter. The inconsistency is removed by employing a Green-Gauss formulation of primitive gradients at nodes to replace the previous Gram-Schmidt algorithm. Current results are now in good agreement with benchmark solutions for two challenge problems: (1) hypersonic flow over a three-dimensional cylindrical section with special attention to the uniformity of the solution in the spanwise direction and (2) hypersonic flow over a three-dimensional sphere. The tetrahedral cells used in the simulation are derived from a structured grid where cell faces are bisected across the diagonal resulting in a consistent pattern of diagonals running in a biased direction across the otherwise symmetric domain. This grid is known to accentuate problems in both shock capturing and stagnation region heating encountered with conventional, quasi-one-dimensional inviscid flux reconstruction algorithms. Therefore the test problems provide a sensitive indicator for algorithmic effects on heating. Additional simulations on a sharp, double cone and the shuttle orbiter are then presented to demonstrate the capabilities of the new algorithm on more geometrically complex flows with tetrahedral grids. These results provide the first indication that pure tetrahedral elements utilizing the updated, three-dimensional, upwind reconstruction algorithm may be used for the simulation of heating and shear in hypersonic flows in upwind, finite volume formulations.
机译:通过使用更新的三维,逆风重构算法对无粘性通量矢量,研究了四面体网格模拟的超音速停滞区域加热的质量。与传统的重建方法相比,该算法的较早实现方式在四面体网格上提供了改进的对称特性。然而,原始配方在加热和剪切方面的定量差异与基准结构化网格解决方案相比高达25%。发现该差异的主要原因是通量限制器的配方中固有的不一致。通过在节点上采用原始梯度的Green-Gauss公式来替换先前的Gram-Schmidt算法,可以消除不一致的情况。目前,目前的结果与针对两个挑战性问题的基准解决方案非常吻合:(1)三维圆柱截面上的高超声速流动,并特别注意翼展方向上溶液的均匀性;(2)三维方向上的高超声速流动尺寸球。在仿真中使用的四面体单元是从结构化网格派生而来的,在该网格中,单元格面在对角线上一分为二,从而导致在其他对称域上沿偏置方向延伸的对角线的模式一致。众所周知,这种网格会加剧传统准准一维无粘性通量重建算法在震动捕获和停滞区域加热中遇到的问题。因此,测试问题为算法对加热的影响提供了敏感的指标。然后提出了在尖锐,双锥和航天飞机轨道上的附加仿真,以证明新算法在具有四面体网格的几何形状更复杂的流上的功能。这些结果提供了第一个指示,即利用更新的三维逆风重建算法的纯四面体单元可用于逆风有限体积公式中高超声速流动的加热和剪​​切模拟。

著录项

  • 作者

    Gnoffo Peter A.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号