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Reduced order modeling for the dynamics of jointed structures through hyper-reduced interface representation

机译:通过超减少界面表示减少了联合结构动态的顺序建模

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One strategy to develop both accurate and computationally tractable models of jointed structures is reduced order modeling through hyper-reduced representations of the interfaces in contact. Hyper reduction refers to reduction techniques that result in a Reduced Order Model (ROM) that is complete by itself, i.e., all displacements and forces are fully described in the ROM coordinates directly. Focusing primarily on applications involving small relative displacement contacts, two fundamentally different approaches are formulated and compared for merits and limitations in applicability. The first is an adaptation of the stiffness-preserving RBE3 constraint elements, and the second is an interpolation approach based on remeshing the interface. Although RBE3 is extensively used in the literature, the current formulation derives stiffness preserving elements that are specifically useful for contact dynamics applications. Transformations are developed to express force-displacement relationships in the ROM coordinates that are congruent (in the sense of using the same contact models) as well as consistent (in the sense of being faithful to the quantities involved) with a high-fidelity model of the same structure. These approaches are applied to study a three-bolted lap-joint structure (the Brake-Reuss Beam (BRB) benchmark) that has been observed to demonstrate characteristic contact non-linearities. Multiple strategies for the hyper reduction are evaluated, including graph partitioning, finite element coarsening, and homogenization of field objectives, some of which involve an extra step of remeshing/choosing patches based on a field objective (e.g., contact pressure). The performances of the ROMs are assessed by conducting nonlinear modal analysis and computing a posteriori error metrics.
机译:一种开发准确和计算贸易模型的连接结构的一个策略是通过接触的接口的超减少表示的阶数建模。 Hyper Creake是指导致阶数模型(ROM)的减少技术,即其自身,即,直接在ROM坐标中完全描述所有位移和力。主要专注于涉及小相对位移触点的应用,配制了两个根本不同的方法,并比较了适用性的优点和限制。首先是对刚度保持RBE3约束元件的改编,第二是基于回忆接口的插值方法。尽管RBE3在文献中广泛使用,但是当前配方导出刚度保存元件,该元件专门用于接触动力学应用。改造是为了表达在一致的ROM坐标中的力 - 位移关系(在使用相同的联络模型的意义上)以及符合高保真模型的一致(在忠于涉及的数量的意义上)结构相同。应用这些方法来研究已经观察到展示特征接触非线性的三螺栓圈 - 关节结构(制动Reuss Beam(BRB)基准)。评估多重减少的多种策略,包括曲线分隔,有限元粗化和现场目标的均匀化,其中一些涉及基于场目标(例如,接触压力)倒闭/选择斑块的额外步骤。通过进行非线性模态分析和计算后验误差指标来评估ROM的性能。

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