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A Dynamic Partitioning Method to solve the vehicle-bridge interaction problem

机译:一种解决车辆桥互动问题的动态分区方法

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This paper presents a Dynamic Partitioning Method (DPM) to solve the vehicle-bridge interaction (VBI) problem via a set of exclusively second-order ordinary differential equations (ODEs). The partitioning of the coupled VBI problem follows a localized Lagrange multipliers approach that introduces auxiliary contact bodies between the vehicle's wheels and the sustaining bridge. The introduction of contact bodies, instead of merely static points, allows the assignment of proper mass, damping and stiffness properties to the involved constrains. These properties are estimated in a systematic manner, based on a consistent application of Newton's law of motion to mechanical systems subjected to bilateral constraints. In turn, this leads to a dynamic representation of motion constraints and associated Lagrange multipliers. Subsequently, both equations of motion and constraint equations yield a set of ODEs. This ODE formulation avoids constraint drifts and instabilities associated with differential-algebraic equations, typically adopted to solve constrained mechanical problems. Numerical applications show that, when combined with appropriate numerical analysis schemes, DPM can considerably decrease the computational cost of the analysis, especially for large vehicle-bridge systems. Thus, compared to existing methods to treat VBI, DPM is both accurate and cost-efficient. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文呈现动态分区方法(DPM),通过一组专门的二阶常微分方程(ODES)来解决车辆桥接相互作用(VBI)问题。耦合VBI问题的划分遵循局部拉格朗日乘法器方法,其在车辆的轮子和维持桥之间引入辅助接触体。接触体的引入代替仅仅是静态点,允许将适当的质量,阻尼和刚度特性分配给所涉及的约束。基于牛顿运动定律对经受双边限制的机械系统的一致应用,这些性质以系统方式估计。反过来,这导致运动约束的动态表示和相关的拉格朗日乘法器。随后,两个运动和约束方程的两个方程产生一组ODES。该颂歌配方避免了与差分代数方程相关的约束漂移和不稳定性,通常采用来解决受约束的机械问题。数值应用表明,当与适当的数值分析方案结合时,DPM可以显着降低分析的计算成本,特别是对于大型车辆桥系统。因此,与现有的治疗VBI方法相比,DPM既准确且成本高。 (c)2021 elestvier有限公司保留所有权利。

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