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A NEW IMPLICIT INTEGRATION SCHEME FOR THE SIMULATION OF STIFF-COMPLEX MECHANICAL SYSTEMS

机译:一种新的隐式集成方案,用于僵硬复杂机械系统的仿真

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When performing the dynamic simulation of stiff mechanical systems, implicit type integration schemes are usually required to preserve stability. This article presents a new implicit time integrator, which is a particular application of a novel state-time formulation recently developed by the authors in a more general scope. The proposed scheme is constructed with the intent of benefitting from the accuracy and apparent robustness thus far achieved with this algorithm in an integration context. This is realized by first setting up the weighted residual form of the governing equations of the system in a form associated with the application of a time marching integration scheme. The resulting algebraic equations are then solved, minimizing the error of integration time step in a generalized energy sense, allowing one to capture the stiff behavior of solution in an efficient manner. Examples are provided to show the proposed method performance when dealing with a stiff system.
机译:在执行硬机械系统的动态仿真时,通常需要隐式类型的集成方案来保持稳定性。本文提出了一个新的隐式时间集成商,它是最近由作者开发的新型国家时间制定的特定应用,在更长的范围内。所提出的方案是在集成上下文中利用该算法实现的准确性和表观稳健性的兴趣来构建。这通过首先以与应用时间行进集成方案的应用相关的形式设置系统的控制方程的加权残差形式来实现。然后解决了所得到的代数方程,最小化广义能量意义上的集成时间步长的误差,允许以有效的方式捕获溶液的刚性行为。提供了实施例以在处理僵硬系统时显示所提出的方法性能。

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