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Irregular lattice model for geometrically nonlinear dynamics of structures

机译:用于几何非线性动力学结构的不规则格子模型

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In this study, an irregular lattice model for geometrically nonlinear analysis of structures is proposed. A conventional lattice element formulation, based on the rigid-body-spring concept, is extended to reflect geometric nonlinearity under large displacements. The large rotational behavior of each lattice cell is considered. Along with general derivation of the new lattice element formulation, an explicit solution scheme is implemented for the dynamic analysis of structures. Examples are presented to demonstrate capabilities of the proposed method for solving geometrically nonlinear problems of elastic solids. Benchmark comparisons are made with finite element solutions for both dynamic and quasi-static loading cases. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在该研究中,提出了一种用于结构的几何非线性分析的不规则晶格模型。 基于刚体弹簧概念的传统格子元素配方延伸以在大型位移下反射几何非线性。 考虑每个晶格细胞的大旋转行为。 随着新格子元素配方的一般推导,实施了明确的解决方案方案,用于结构的动态分析。 提出了示例以证明所提出的方法求解弹性固体的几何非线性问题的方法的能力。 基准比较是用有限元解决方案进行的动态和准静态加载案例。 (c)2020 elestvier有限公司保留所有权利。

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