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Combined semi-recursive formulation and lumped fluid method for monolithic simulation of multibody and hydraulic dynamics

机译:组合半递归配方和集体流体方法,用于单体和液压动力学的单片模拟

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摘要

The use of multibody simulation tools allows complex machinery to be described in detail while still providing a solution for the system in real time. As mechanical components are often accompanied by other dynamical systems, such as hydraulics, description of each subsystem is required to fully describe the dynamics of complex machinery. Apotential candidate for solving the multiphysics problem at hand is known as the unified or monolithic approach. This strongly coupled approach yields a single set of equations to be integrated and, compared to co-simulation and co-integration approaches, a relatively simple integration procedure. In this paper, a monolithic formulation for a combined simulation of multibody and hydraulic dynamics using an efficient semi-recursive formulation and the lumped fluid method is introduced. The results indicate that the proposed method shows potential for efficient simulation of combined multibody and hydraulic problems. The robustness of the multibody method is maintained when combined with the hydraulic dynamics description and higher efficiency is observed than with an equivalent global approach.
机译:多体仿真工具的使用允许详细描述复杂的机器,同时实时为系统提供解决方案。由于机械部件通常由其他动态系统伴随,例如液压系统,因此需要对每个子系统的描述完全描述复杂机器的动态。用于解决手头的多体问题的支持候选者被称为统一或单片方法。这种强耦合的方法产生了一组单一的方程,与共模和共同集成方法相比,相对简单的积分过程。本文介绍了使用有效半递归制剂的多体和液压动力学的组合模拟的单片制剂和综合流体方法。结果表明,该方法显示了有效模拟组合多体和水力问题的潜力。当与液压动力学描述结合时,维持多体方法的稳健性,并且观察到比等同的全局方法更高的效率。

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