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Building a suited reduced modal basis for updating 3D acoustic models with the constitutive law error method

机译:为使用本构律误差法更新3D声学模型建立合适的简化模态基础

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We have recently reported the possibility of developing an updating technique for acoustic finite element models based on the constitutive law error proposed by P. Ladeveze and co-workers in structural dynamics. Like with every updating technique, we are confronted with and interested in reducing the computational time. The main idea of this paper consists in building a reduced modal basis made of two contributions: static modes complete a truncated modal basis corresponding to the frequency range of computation. The static modes are associated to the system excitation (for instance a normal velocity boundary condition), but also to the system damping and to the reference measurements. Updating acoustic models using the reduced modal basis shows a significant CPU-time saving with respect to the full non reduced system with an acceptable accuracy.
机译:我们最近报告了根据P. Ladeveze和他的同事在结构动力学中提出的本构定律误差开发声学有限元模型更新技术的可能性。像每种更新技术一样,我们面对减少计算时间也很感兴趣。本文的主要思想在于建立一个由两个贡献构成的简化模态基础:静态模式完成了对应于计算频率范围的截断模态基础。静态模式与系统激励(例如正常速度边界条件)相关,但与系统阻尼和参考测量相关。使用简化的模态基础更新声学模型显示,相对于完整的非简化系统,以可接受的精度可以节省大量的CPU时间。

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