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Reduced-Order Modeling of Unsteady Flows Without Static Correction Requirement

机译:没有静态校正要求的非定常流的降阶建模

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摘要

A new reduced-order modeling approach is presented. This approach is based on fluid eigenmodes and without using the static correction. The vortex lattice method is used to analyze unsteady flows over two-dimensional airfoils and three-dimensional wings. Eigenanalysis and reduced-order modeling are performed using a conventional method with and without the static correction technique. In addition to the conventional method, eigenanalysis and reduced-order modeling are also performed using the new proposed method, that is, without static correction requirement. Numerical examples are presented to demonstrate the accuracy and computational efficiency of the proposed method. Based on the obtained results, it is shown that the accurate reduced-order models of unsteady flows can be constructed without using the static correction technique.
机译:提出了一种新的降阶建模方法。该方法基于流体本征模式,并且不使用静态校正。涡流格子法用于分析二维翼型和三维机翼上的非定常流动。本征分析和降阶建模是使用带有或不带有静态校正技术的常规方法执行的。除传统方法外,还使用新提出的方法进行特征分析和降阶建模,即无需静态校正。数值算例表明了该方法的准确性和计算效率。根据获得的结果,表明无需使用静态校正技术就可以构建精确的非定常流降阶模型。

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