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Configuration design sensitivity analysis and optimization of beam structures

机译:构型设计灵敏度分析与梁结构优化

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A general method for configuration design sensitivity analysis over a three-dimensional beam structure is developed based on a variational formulation of the classical beam in linear elasticity. A sensitivity formula is derived based on a variational equation for the beam structure using the material derivative concept and adjoint variable method. The formulation considers not only the shape variation in a three dimensional direction, which includes translational as well as rotational change of the beam but also the orientation angle variation of the beam's cross section. The sensitivity formula can be evaluated with generality and ease even by employing a piecewise linear design velocity field despite the fact that the bending model is a fourth order differential equation. The design sensitivity analysis is implemented using the post-processing data of a commercial code ANSYS. Several numerical examples are given to show the excellent accuracy of the method. Optimization is carried out for a tilted arch bridge and an archgrid structure to show the method's applicability.
机译:基于经典梁线性弹性的变分形式,提出了一种在三维梁结构上进行结构设计灵敏度分析的通用方法。使用材料导数概念和伴随变量法,基于梁结构的变分方程,导出了灵敏度公式。该公式不仅考虑了三维方向的形状变化(包括梁的平移和旋转变化),还考虑了梁横截面的定向角变化。尽管弯曲模型是四阶微分方程,但即使采用分段线性设计速度场,也可以通用且轻松地评估灵敏度公式。设计敏感性分析是使用商业代码ANSYS的后处理数据实现的。给出了几个数值例子,说明了该方法的出色准确性。对倾斜的拱桥和拱格结构进行了优化,以显示该方法的适用性。

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