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An explicit algorithm for geometrically nonlinear transient analysis of spatial beams using a corotational total Lagrangian finite element formulation

机译:使用插值全拉格朗日有限元公式的空间梁几何非线性瞬态分析的显式算法。

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An explicit method for nonlinear transient dynamic analysis of spatial beams with finite rotations using a corotational total Lagrangian finite element formulation is presented. The kinematics of the beam element is described in the current element coordinate system constructed in the current configuration of the beam element. The element deformation and inertia nodal forces are derived by the virtual work principle, the d'Alembert principle, and the consistent linearization of the geometrically nonlinear beam theory. A nodal rotation vector is used to represent the finite rotation of a base coordinate system rigidly attached to each node of the discretized structure. A numerical procedure of explicit method is proposed for the solution of the nonlinear equations of motion. The standard central difference method is applied to the incremental displacement vector and the incremental rotation vector, and the time derivatives of displacement vector and rotation vector. The nodal orientations are updated by the incremental nodal rotation vectors. The values of nodal rotation vectors are reset to zero in the current configuration.
机译:提出了一种采用带比例总拉格朗日有限元公式的有限旋转空间梁非线性瞬态动力分析的显式方法。梁单元的运动学在以梁单元的当前配置构造的当前单元坐标系中进行描述。单元变形和惯性节点力是根据虚拟功原理,d'Alembert原理以及几何非线性梁理论的一致线性化推导出来的。节点旋转矢量用于表示刚性附着到离散结构的每个节点的基本坐标系的有限旋转。提出了一种显式方法的数值程序,用于求解非线性运动方程。将标准中心差方法应用于增量位移矢量和增量旋转矢量,以及位移矢量和旋转矢量的时间导数。节点方向通过增量节点旋转矢量进行更新。在当前配置中,节点旋转矢量的值重置为零。

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