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Node-based free-form optimization method for vibration problems of shell structures

机译:基于节点的壳体结构振动问题的自由形式优化方法

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We have previously proposed a numerical node-based parameter-free shape optimization method for designing the optimal free-form surface of shell structures. In this paper, this method is extended to deal with two vibration problems including a vibration eigenvalue maximization problem and a frequency response minimization problem. To avoid the repeated eigenvalue problem when a specified vibration eigenvalue is maximized, we provide two optional approaches, i.e., tracking the specified natural mode or increasing all the repeated eigenvalues. Each vibration problem is formulated as a distributed parameter shape optimization problem, and the derived shape gradient function is applied to the H-1 gradient method for the shells proposed by the authors, where the shape gradient function is used as a distributed force function to vary the surface. With this method, the optimal and smooth free-form shape including a natural bead pattern can be obtained. Several calculated examples are presented to demonstrate the effectiveness of the proposed method for the free-form design of shell structures involving vibration problems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们先前已经提出了一种基于数值节点的无参数形状优化方法,用于设计壳体结构的最佳自由曲面。本文将该方法扩展为处理两个振动问题,包括振动特征值最大化问题和频率响应最小化问题。为了避免在指定振动特征值最大化时出现重复特征值问题,我们提供了两种可选方法,即跟踪指定自然模式或增加所有重复特征值。将每个振动问题公式化为分布参数形状优化问题,并将得出的形状梯度函数应用于作者提出的壳体的H-1梯度方法,其中形状梯度函数用作分布力函数以进行变化表面。通过这种方法,可以获得包括自然的珠子图案的最佳且光滑的自由形状。给出了几个计算示例,以证明所提出方法对涉及振动问题的壳体结构自由形式设计的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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