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首页> 外文期刊>Journal of Aircraft >Three-Dimensional Transonic Aeroelasticity Using Proper Orthogonal Decomposition-Based Reduced-Order Models
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Three-Dimensional Transonic Aeroelasticity Using Proper Orthogonal Decomposition-Based Reduced-Order Models

机译:使用基于正交分解的降阶模型的三维跨音速气动弹性

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摘要

The proper orthogonal decomposition (POD-) based reduced-order modeling technique for modeling unsteady frequency-domain aerodynamics is developed for a large-scale computational model of an inviscid flow transonic wing configuration. When the methodology is used, it is shown that a computational fluid dynamic model with over three-quarters of a million degrees of freedom can be reduced to a system with just a few dozen degrees of freedom, while still retaining the accuracy of the unsteady aerodynamics of the full system representation. Furthermore, POD vectors generated from unsteady flow solution snapshots based on one set of structural mode shapes can be used for different structural mode shapes so long as solution snapshots at the endpoints of the frequency range of interest are included in the overall snapshot ensemble. Thus, the snapshot computation aspect of the method, which is the most computationally expensive part of the procedure, does not have to be fully repeated as different structural configurations are considered.
机译:针对粘性流跨音速机翼构型的大规模计算模型,开发了基于非正交分解(POD-)的降阶建模技术,用于建模非稳态频域空气动力学。当使用该方法时,表明可以将具有四分之三自由度的四分之一自由度的计算流体动力学模型简化为只有几十个自由度的系统,同时仍保持非定常空气动力学的准确性完整的系统表示形式。此外,只要将感兴趣的频率范围的端点处的解决方案快照包含在整个快照集合中,就可以将基于一组结构模式形状的非恒定流解决方案快照生成的POD向量用于不同的结构模式形状。因此,该方法的快照计算方面(该过程在计算上最昂贵的部分)不必完全重复,因为考虑了不同的结构配置。

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