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A nonlinear POD-Galerkin reduced-order model for compressible flows taking into account rigid body motions

机译:考虑刚体运动的可压缩流的非线性POD-Galerkin降阶模型

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The construction of a nonlinear reduced-order model for fluid-structure interaction problems is investigated in this paper for unsteady compressible flows excited by the rigid body motion of a structure. The reduction is achieved by means of a Galerkin projection of the Navier-Stokes equations on the first POD modes resulting from the proper orthogonal decomposition. In the first part of the paper, the projection technique is carried out on a purely aerodynamic case in order (ⅰ) to validate an efficient iterative technique based on an updated QR decomposition to compute the POD modes, and (ⅱ) to discuss the merits of different correction methods introduced to improve the long-term stability of the reduced-order model. The second and most original part of the paper deals with the construction of the reduced set of equations which arise from the projection of the compressible Navier-Stokes equations formulated in a suitable moving frame representing the rigid body motion. The expressions of the resulting non-autonomous terms appearing in the reduced-order model have also been optimized to reduce the computational costs.
机译:本文研究了由结构刚体运动激发的非稳态可压缩流的非线性降阶模型。减少是通过适当的正交分解在第一POD模式上的Navier-Stokes方程的Galerkin投影实现的。在本文的第一部分中,在纯空气动力学情况下执行投影技术,以便(ⅰ)验证基于更新的QR分解以计算POD模式的有效迭代技术,以及(ⅱ)讨论其优点引入了不同的校正方法,以改善降阶模型的长期稳定性。本文的第二部分也是最原始的部分是构建简化的方程组,该方程组是由可压缩的Navier-Stokes方程的投影在一个表示刚体运动的合适运动框架中提出的。降阶模型中出现的所得非自治项的表达式也已进行了优化,以降低计算成本。

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