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Nonlinear dynamic analysis of Timoshenko beam-columns partially supported on tensionless Winkler foundation

机译:无张力Winkler基础上部分支承的Timoshenko梁柱的非线性动力分析

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摘要

In this paper, a boundary element method is developed for the nonlinear dynamic analysis of beam-columns of arbitrary doubly symmetric simply or multiply connected constant cross section, partially supported on tensionless Winkler foundation, undergoing moderate large deflections under general boundary conditions, taking into account the effects of shear deformation and rotary inertia. The beam-column is subjected to the combined action of arbitrarily distributed or concentrated transverse loading and bending moments in both directions as well as to axial loading. To account for shear deformations, the concept of shear deformation coefficients is used. Five boundary value problems are formulated with respect to the transverse displacements, to the axial displacement and to two stress functions and solved using the analog equation method, a BEM based method. Application of the boundary element technique yields a nonlinear coupled system of equations of motion. The solution of this system is accomplished iteratively by employing the average acceleration method in combination with the modified Newton Raphson method. The evaluation of the shear deformation coefficients is accomplished from the aforementioned stress functions using only boundary integration. The proposed model takes into account the coupling effects of bending and shear deformations along the member as well as the shear forces along the span induced by the applied axial loading. Numerical examples are worked out to illustrate the efficiency, wherever possible the accuracy and the range of applications of the developed method.
机译:本文提出了一种边界元方法,用于任意双重对称的简单或多重连接的恒定截面的梁柱的非线性动力分析,该梁的部分支撑在无张力的Winkler基础上,考虑了一般边界条件下的中等大挠度剪切变形和旋转惯性的影响。梁柱承受两个方向上任意分布或集中的横向载荷和弯矩以及轴向载荷的共同作用。为了解决剪切变形,使用了剪切变形系数的概念。针对横向位移,轴向位移和两个应力函数,提出了五个边界值问题,并使用基于BEM的模拟方程法求解。边界元技术的应用产生了运动方程的非线性耦合系统。该系统的解决方案是通过采用平均加速度方法与改进的Newton Raphson方法相结合来迭代完成的。剪切变形系数的评估仅使用边界积分从上述应力函数完成。所提出的模型考虑了沿构件弯曲和剪切变形的耦合效应,以及由施加的轴向载荷引起的沿跨度的剪切力。数值算例说明了所开发方法的效率,准确性和适用范围。

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