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Adjoint-Based, Three-Dimensional Error Prediction and Grid Adaptation

机译:基于伴随的三维误差预测和网格自适应

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摘要

Engineering computational fluid dynamics analysis and design applications often focus on output functions, such as lift or drag. Errors in these output functions are generally unknown, and conservatively accurate solutions may be computed. Computable error estimates can offer the possibility to minimize computational work for a prescribed error tolerance. Such an estimate can be computed by solution of the flow equations and the linear adjoint problem for the functional of interest. The computational mesh can be modified to minimize the uncertainty of a computed error estimate. This robust mesh-adaptation procedure automatically terminates when the simulation is within a user-specified error tolerance. This procedure for estimation and adaptation to error in a functional is demonstrated for three-dimensional Euler problems. An adaptive mesh procedure that links to a CAD surface representation is demonstrated for wing, wing-body, and extruded high lift airfoil configurations. The error estimation and adaptation procedure yielded corrected functions that are as accurate as functions calculated on uniformly refined grids with many more grid points.
机译:工程计算流体动力学分析和设计应用程序通常侧重于输出功能,例如升力或阻力。这些输出函数中的错误通常是未知的,并且可以计算出保守准确的解。可计算的误差估计可以为规定的误差容限提供最小化计算工作的可能性。这样的估计可以通过流动方程的解和感兴趣的函数的线性伴随问题来计算。可以修改计算网格以最小化所计算的误差估计的不确定性。当仿真在用户指定的容错范围内时,此鲁棒的网格自适应过程将自动终止。针对三维欧拉问题,演示了此函数的估计和误差校正过程。演示了一种适用于机翼,机翼机体和挤压式高升力机翼构型的,链接至CAD表面表示的自适应网格程序。误差估计和自适应过程产生的校正函数与在具有更多网格点的均匀精炼网格上计算出的函数一样准确。

著录项

  • 来源
    《AIAA Journal》 |2004年第9期|p.1854-1862|共9页
  • 作者

    Michael Andrew Park;

  • 作者单位

    NASA Langley Research Center, Hampton, Virginia 23681;

  • 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 航空、航天;航空;
  • 关键词

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