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Sensitivity Analysis and Shape Optimization of a Hole in a Vibrating Rectangular Plate for Eigenfrequency Maximization

机译:振动矩形板中本征频率最大化的灵敏度分析和形状优化

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A hole inside a rectangular thin plate is optimized for maximization of an eigenfrequency of the structure. The shape of the hole is represented by an ellipse parametrization to guarantee a smooth curve along the boundary; and the hole’s center position, semiaxes, and rotation are treated as shape design variables. The Rayleigh-Ritz approach is applied to constitute the vibration frequency equation such that an exact procedure can be presented for the frequency sensitivity analysis. The hole shape optimization is performed by using a combined mathematical programming algorithm with different search directions for two sets of design variables in relation to the constraint of the hole’s size. In addition, a simple optimality criterion is provided for the optimum profile design of the internal hole of a given area. Several illustrative examples demonstrate the validity and effectiveness of the design sensitivity analysis and the proposed optimization method.
机译:为了使结构的本征频率最大化,优化了矩形薄板内部的孔。孔的形状由椭圆形参数化表示,以确保沿边界的平滑曲线。并将孔的中心位置,半轴和旋转视为形状设计变量。应用瑞利-里兹(Rayleigh-Ritz)方法来构成振动频率方程,以便可以为频率灵敏度分析提供精确的过程。孔的形状优化是通过使用组合的数学编程算法来执行的,该算法具有与孔大小的约束有关的两组设计变量的不同搜索方向。此外,为给定区域内孔的最佳轮廓设计提供了一个简单的最佳性准则。几个示例说明了设计敏感性分析和所提出的优化方法的有效性和有效性。

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