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A model order reduction technique for systems with nonlinear frequency dependent damping

机译:具有非线性频率依赖性阻尼系统的模型顺序减少技术

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摘要

Frequency domain solution of systems with frequency dependent damping is a computationally expensive endeavour especially when dealing with large order three-dimensional systems. A moment-matching based reduced order model is proposed in this work which is capable of handling nonlinear frequency dependent damping in second-order systems. In the proposed approach, local linear systems with frequency independent matrices are derived from the original system, and using the principles of the Rational Krylov approach, orthogonal basis vectors are computed from these local systems through the second-order Arnoldi procedure. The system is then projected on to the basis set to obtain a numerically efficient reduced order model, accurate in the entire frequency domain of interest. The proposed approach is also shown to be more accurate than the popular modal projection based multi-model approach of the same order. The proposed tool is applied to the problem of determining the frequency response of an idealised centrifugal compressor impeller with non-viscous (frequency dependent) damping.
机译:频率依赖阻尼系统的频域解决方案是计算昂贵的努力,特别是在处理大阶三维系统时。在该工作中提出了一种基于时刻匹配的基于阶数模型,其能够在二阶系统中处理非线性频率依赖性阻尼。在所提出的方法中,具有频率独立矩阵的本地线性系统源自原始系统,并且使用Rational Krylov方法的原理,通过二阶Arnoldi过程从这些本地系统计算正交基向量。然后将系统投影到基础集中,以获得数值有效的减少阶模型,在整个频域中精确的感兴趣。所提出的方法也被认为比相同顺序的流行模态投影的多模型方法更准确。所提出的工具应用于确定具有非粘性(频率)阻尼的理想化离心压缩机叶轮的频率响应的问题。

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