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首页> 外文期刊>Advances in Engineering Software >Topology optimization method with direct coupled finite element-element-free Galerkin method
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Topology optimization method with direct coupled finite element-element-free Galerkin method

机译:直接耦合无有限元Galerkin方法的拓扑优化方法

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A topology optimization method, based on a direct coupled finite element (FE) and element-free Galerkin (EFG) method, is developed in this study, for reducing the computational cost of EFG-based topology optimization methods. Comparing with other coupling methods, the new coupling method can guarantee higher order continuity of the shape function in the coupling region and it can be implemented easily. A constrained centroidal Voronoi tessellation (CCVT) algorithm associated with density variable is developed to generate updated EFG nodes for the discretizing of EFG domain during the iterations which accelerates the optimization convergence. To reduce the computational cost, an adaptive multi-level Gauss quadrature scheme is introduced for numerical integration. Several examples are given to demonstrate the effectiveness of the proposed approach and the proposal shows advantages comparing with some other topology optimization methods.
机译:为了降低基于EFG的拓扑优化方法的计算成本,本研究开发了一种基于直接耦合有限元(FE)和无元素Galerkin(EFG)方法的拓扑优化方法。与其他耦合方法相比,新的耦合方法可以保证形状函数在耦合区域中的更高阶连续性,并且可以轻松实现。开发了一种与密度变量关联的受限质心Voronoi镶嵌(CCVT)算法,以生成更新的EFG节点,以在迭代过程中离散化EFG域,从而加速了优化收敛。为了降低计算成本,引入了一种自适应多级高斯正交方案进行数值积分。给出了几个例子来说明该方法的有效性,并且该建议与其他拓扑优化方法相比具有优势。

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