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首页> 外文期刊>Frontiers of mechanical engineering >Level set-based isogeometric topology optimization for maximizing fundamental eigenfrequency
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Level set-based isogeometric topology optimization for maximizing fundamental eigenfrequency

机译:基于水平集的等几何拓扑优化以最大化基本特征频率

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摘要

Maximizing the fundamental eigenfrequency is an efficient means for vibrating structures to avoid resonance and noises. In this study, we develop an isogeometric analysis (IGA)-based level set model for the formulation and solution of topology optimization in cases with maximum eigenfrequency. The proposed method is based on a combination of level set method and IGA technique, which uses the non-uniform rational B-spline (NURBS), description of geometry, to perform analysis. The same NURBS is used for geometry representation, but also for IGA-based dynamic analysis and parameterization of the level set surface, that is, the level set function. The method is applied to topology optimization problems of maximizing the fundamental eigenfrequency for a given amount of material. A modal track method, that monitors a single target eigenmode is employed to prevent the exchange of eigenmode order number in eigenfrequency optimization. The validity and efficiency of the proposed method are illustrated by benchmark examples.
机译:最大化基本特征频率是使结构振动以避免共振和噪声的有效手段。在这项研究中,我们开发了基于等几何分析(IGA)的水平集模型,用于在最大特征频率情况下制定和解决拓扑优化问题。所提出的方法是基于水平集方法和IGA技术的结合,该方法使用非均匀有理B样条(NURBS)(几何描述)进行分析。相同的NURBS用于几何图形表示,还用于基于IGA的动态分析和水平设置曲面的参数化,即水平设置功能。该方法适用于拓扑优化问题,该问题针对给定数量的材料使基本本征频率最大化。在本征频率优化中,采用监视单个目标本征模的模态跟踪方法来防​​止本征模阶数的交换。基准实例说明了该方法的有效性和有效性。

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