Assessment of dynamic response FD algorithms by beam and plate FE computations

H. Alaylioglu, Ayse Alaylioglu, S. Oral
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Abstract

Improvement in understanding of the process of direct integration of the equations of motion through numerical dissipation parameter interaction is being regarded as one of the significant achievements of structural dynamics research over the past quarter century. The numerical software fraternity has extended one-step integration algorithms, emphasizing controllable approximation characteristics with respect to such factors as period elongation and amplitude decay. These studies have resulted in setting up a class of implicit, second order finite difference (FD) generic models which are unconditionally stable depending on the range of influence of the corporate parameters.

The aim of this paper is to review some of the strategems incorporating the dissipation control, and to provide representative numerical findings in beam and plate applications through a unification algorithm, which streamlines the intervention of alpha modifiers to Newmark's integration formalism by evoking a set of recurrence relations that serves to pool accessible and amendable dissipation parameters. Experience has shown that the beam and plate finite element (FE) response calculations provide considerable impetus to use Bossak's type integrator with large values of the dissipative parameter.

通过梁和板的有限元计算评估动态响应FD算法
通过数值耗散参数相互作用对运动方程直接积分过程的理解的改进被认为是过去25年来结构动力学研究的重要成果之一。数值软件兄弟会扩展了一步积分算法,强调了周期延长和幅度衰减等因素的可控近似特性。这些研究结果建立了一类隐式二阶有限差分(FD)一般模型,该模型根据企业参数的影响范围无条件稳定。本文的目的是回顾一些包含耗散控制的策略,并通过统一算法提供梁和板应用中的代表性数值结果,该算法通过调用一组用于汇集可访问和可修改耗散参数的递归关系,简化了alpha修饰符对Newmark积分形式的干预。经验表明,梁和板有限元响应计算为采用耗散参数较大的Bossak型积分器提供了相当大的动力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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