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Computational Hydrodynamic Stability and Flow Control Based on Spectral Analysis of Linear Operators

机译:基于线性算子谱分析的计算流体力学稳定性和流量控制

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摘要

This paper considers the analysis and control of fluid flows using tools from dynamical systems and control theory. The employed tools are derived from the spectral analysis of various linear operators associated with the Navier-Stokes equations. Spectral decomposition of the linearized Navier-Stokes operator, the Koopman operator, the spatial correlation operator and the Hankel operator provide a means to gain physical insight into the dynamics of complex flows and enables the construction of low-dimensional models suitable for control design. Since the discretization of the Navier-Stokes equations often leads to very large-scale dynamical systems, matrix-free and in some cases iterative techniques have to be employed to solve the eigenvalue problem. The common theme of the numerical algorithms is the use of direct numerical simulations. The theory and the algorithms are exemplified on flow over a flat plate and a jet in crossflow, as prototypes for the laminar-turbulent transition and three-dimensional vortex shedding.
机译:本文考虑使用动力系统和控制理论的工具对流体流动进行分析和控制。所使用的工具来自与Navier-Stokes方程相关的各种线性算子的频谱分析。线性化的Navier-Stokes算子,Koopman算子,空间相关算子和Hankel算子的谱分解提供了一种手段,可让您深入了解复杂流的动力学,并能够构建适用于控制设计的低维模型。由于Navier-Stokes方程的离散化经常导致非常大型的动力学系统,因此必须采用无矩阵方法,在某些情况下还需要采用迭代技术来解决特征值问题。数值算法的共同主题是直接数值模拟的使用。该理论和算法以平板上的流动和错流的射流为例,作为层流湍流过渡和三维涡旋脱落的原型。

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  • 来源
    《Archives of Computational Methods in Engineering》 |2012年第3期|p.341-379|共39页
  • 作者

    Shervin Bagheri;

  • 作者单位

    DICAT, Universita' di Genova, Via Montallegro 1, 16145 Genova, Italy Linne Flow Centre, Royal Institute of Technology (KTH), 10044 Stockholm, Sweden;

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