The α-generalized implicit method associated with Potra–Pták iteration for solving non-linear dynamic problems

Luiz Antonio Farani de Souza, Lucas Lauer Verdade
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Abstract

Generally, direct time integration procedures are used for solving the equations of motion in transient analysis of structures with large displacements. In this context, we propose an algorithm that combines the α-Generalized implicit integration method with the Potra–Pták two-step iterative scheme. The free Scilab program develops a computer code for the non-linear dynamic analysis of plane frames with large displacements and rotations. The FEM corotational formulation discretizes the structures considering the Euler-Bernoulli beam theory. The null-length connection element described by the axial, translational and rotational stiffnesses simulate the behavior of the beam-column connection. Jacobi’s method and the Scilab’s spec function determine the natural frequencies. The developed program is used for modal and transient dynamic analyses of frame problems available in the literature. The numerical results show that the Potra-Pták scheme obtains approximate solutions with fewer cumulative iterations until convergence and shorter processing time compared to the standard Newton-Raphson scheme. Further-more, the results show that the type of beam-column connection affects the vibratory behavior of the structure as well as the values of its natural frequencies.
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与波特拉-帕塔克迭代法相关的 α 广义隐式方法,用于解决非线性动态问题
一般来说,在对具有较大位移的结构进行瞬态分析时,会采用直接时间积分程序来求解运动方程。在这种情况下,我们提出了一种将 α 广义隐式积分法与 Potra-Pták 两步迭代方案相结合的算法。免费的 Scilab 程序为大位移和大旋转平面框架的非线性动态分析开发了计算机代码。考虑到欧拉-伯努利梁理论,有限元相关公式将结构离散化。由轴向、平移和旋转刚度描述的空长连接元素模拟梁柱连接的行为。雅可比方法和 Scilab 的规格函数确定了自然频率。开发的程序用于对文献中的框架问题进行模态和瞬态动态分析。数值结果表明,与标准牛顿-拉斐森方案相比,Potra-Pták 方案获得近似解的累计迭代次数更少,直到收敛,处理时间更短。此外,结果表明,梁柱连接的类型会影响结构的振动行为及其自然频率值。
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