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具有参数对流边界条件的热机械模型的模型降阶:聚焦于机床

Model order reduction of thermo-mechanical models with parametric convective boundary conditions: focus on machine tools.

作者信息

Hernández-Becerro Pablo, Spescha Daniel, Wegener Konrad

机构信息

inspire AG, Technoparkstrasse 1, 8005 Zurich, Switzerland.

Institute of Machine Tool and Manufacturing, ETH Zurich, Leonhardstrasse 21, 8092 Zurich, Switzerland.

出版信息

Comput Mech. 2021;67(1):167-184. doi: 10.1007/s00466-020-01926-x. Epub 2020 Sep 24.

Abstract

Thermo-mechanical finite element (FE) models predict the thermal behavior of machine tools and the associated mechanical deviations. However, one disadvantage is their high computational expense, linked to the evaluation of the large systems of differential equations. Therefore, projection-based model order reduction (MOR) methods are required in order to create efficient surrogate models. This paper presents a parametric MOR method for weakly coupled thermo-mechanical FE models of machine tools and other similar mechatronic systems. This work proposes a reduction method, Krylov Modal Subspace (KMS), and a theoretical bound of the reduction error. The developed method addresses the parametric dependency of the convective boundary conditions using the concept of system bilinearization. The reduced-order model reproduces the thermal response of the original FE model in the frequency range of interest for any value of the parameters describing the convective boundary conditions. Additionally, this paper investigates the coupling between the reduced-order thermal system and the mechanical response. A numerical example shows that the reduced-order model captures the response of the original system in the frequency range of interest.

摘要

热机械有限元(FE)模型可预测机床的热行为及相关的机械偏差。然而,其一个缺点是计算成本高,这与大型微分方程组的求解有关。因此,需要基于投影的模型降阶(MOR)方法来创建高效的替代模型。本文提出了一种针对机床及其他类似机电系统的弱耦合热机械有限元模型的参数化MOR方法。这项工作提出了一种降阶方法,即克里洛夫模态子空间(KMS),以及降阶误差的理论界限。所开发的方法利用系统双线性化的概念来处理对流边界条件的参数依赖性。对于描述对流边界条件的参数的任何值,降阶模型都能在感兴趣的频率范围内再现原始有限元模型的热响应。此外,本文研究了降阶热系统与机械响应之间的耦合。一个数值例子表明,降阶模型在感兴趣的频率范围内捕捉到了原始系统的响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6596/7847468/7e3b460ed310/466_2020_1926_Fig1_HTML.jpg

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