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Stabilization of linear flow solver for turbomachinery aeroelasticity using recursive projection method

机译:递推投影法稳定涡轮机气动弹性线性流动求解器

摘要

The linear analysis of turbomachinery aeroelasticity relies on the assumption of small level of unsteadiness and requires the solution of both the nonlinear steady and the linear unsteady flow equations. The objective of the analysis is to compute a complex flow solution that represents the amplitude and phase of the unsteady flow perturbation for the frequency of unsteadiness of interest The solution procedure of the linear harmonic Euler/Navier-Stokes solver of the HYDRA suite of codes consists of a preconditioned fixed-point iteration, which in some circumstances becomes numerically unstable. Previous work had already highlighted the physical origin of these numerical instabilities and demonstrated the code stabilization achieved by wrapping the core part of the linear code with a Generalized Minimal Residual (GMRES) solver. The implementation and the use of an alternative algorithm, namely, the Recursive Projection Method, is summarized. This solver is shown to be well suited for both stabilizing the fixed-point iteration and improving its convergence rate in the absence of numerical instabilities. In the framework of the linear analysis of turbomachinery aeroelasticity, this method can be computationally competitive with the GMRES approach.
机译:涡轮机械气动弹性的线性分析依赖于较小的非稳态水平的假设,并且需要求解非线性稳态和线性非稳态流动方程。分析的目的是计算一个复杂的流解,该解表示感兴趣的不稳定频率的不稳定流扰动的幅度和相位。HYDRA代码套件的线性谐波Euler / Navier-Stokes求解器的求解程序包括预处理定点迭代的结果,在某些情况下在数值上变得不稳定。先前的工作已经强调了这些数值不稳定性的物理原因,并展示了通过使用通用最小残差(GMRES)求解器包装线性代码的核心部分而实现的代码稳定性。总结了一种替代算法,即递归投影方法的实现和使用。该求解器显示非常适合在不存在数值不稳定性的情况下稳定定点迭代并提高其收敛速度。在涡轮机械气动弹性线性分析的框架内,该方法与GMRES方法在计算上具有竞争力。

著录项

  • 作者

    Campobasso MS; Giles MB;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 aar
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