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Topology design of plates considering different volume control methods

机译:考虑不同体积控制方法的板的拓扑设计

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Purpose - The purpose of this paper is to compare between two methods of volume control in the context of topological derivative-based structural optimization of Kirchhoff plates. Design/methodology/approach - The compliance topology optimization of Kirchhoff plates subjected to volume constraint is considered. In order to impose the volume constraint, two methods are presented. The first one is done by means of a linear penalization method. In this case, the penalty parameter is the coefficient of a linear term used to control the amount of material to be removed. The second approach is based on the Augmented Lagrangian method which has both, linear and quadratic terms. The coefficient of the quadratic part controls the Lagrange multiplier update of the linear part. The associated topological sensitivity is used to devise a structural design algorithm based on the topological derivative and a level-set domain representation method. Finally, some numerical experiments are presented allowing for a comparative analysis between the two methods of volume control from a qualitative point of view. Findings - The linear penalization method does not provide direct control over the required volume fraction. In contrast, through the Augmented Lagrangian method it is possible to specify the final amount of material in the optimized structure. Originality/value - A strictly simple topology design algorithm is devised and used in the context of compliance structural optimization of Kirchhoff plates under volume constraint. The proposed computational framework is quite general and can be applied in different engineering problems.
机译:目的-本文的目的是在基于拓扑导数的Kirchhoff板结构优化的背景下比较两种体积控制方法。设计/方法/方法-考虑了受体积约束的Kirchhoff板的顺应性拓扑优化。为了施加体积约束,提出了两种方法。第一个是通过线性罚分法完成的。在这种情况下,惩罚参数是用于控制要去除的材料量的线性项的系数。第二种方法基于同时具有线性和二次项的增强拉格朗日方法。二次部分的系数控制线性部分的拉格朗日乘数更新。相关的拓扑敏感性用于设计基于拓扑导数和水平集域表示方法的结构设计算法。最后,提出了一些数值实验,可以从定性的角度对两种音量控制方法进行比较分析。结果-线性惩罚方法不能直接控制所需的体积分数。相反,通过增强拉格朗日方法,可以指定优化结构中材料的最终数量。原创性/价值-设计一种严格简单的拓扑设计算法,并将其用于在体积约束下Kirchhoff板的依从性结构优化。所提出的计算框架非常通用,可以应用于不同的工程问题。

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