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Gust load analysis using computational fluid dynamics derived reduced order models

机译:使用计算流体动力学导出的降阶模型进行阵风载荷分析

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摘要

Time domain gust response analysis based on large order nonlinear aeroelastic models is computationally expensive. An approach to the reduction of nonlinear models for gust response prediction is presented in this paper. The method uses information on the eigenspectrum of the coupled system Jacobian matrix and projects the full order model, through a series expansion, onto a small basis of eigenvectors which is capable of representing the full order model dynamics. The novelty in the paper concerns the representation of the gust term in the reduced model in a manner consistent with standard synthetic gust definitions, allowing a systematic investigation of the influence of a large number of gust shapes without regenerating the reduced model. Results are presented for the Goland wing/store configuration.
机译:基于大阶非线性气动弹性模型的时域阵风响应分析在计算上是昂贵的。本文提出了一种减少非线性模型的阵风反应预测的方法。该方法使用耦合系统雅可比矩阵本征谱上的信息,并通过级数展开将全阶模型投影到较小的本征向量基础上,该特征向量能够表示全阶模型动力学。论文中的新颖性涉及简化模型中阵风术语的表示方式,该方式与标准合成阵风定义相一致,从而可以在不重新生成简化模型的情况下,系统地研究大量阵风形状的影响。显示了Goland机翼/商店配置的结果。

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