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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical Assessment of Reduced Order Modeling Techniques for Dynamic Analysis of Jointed Structures With Contact Nonlinearities
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Numerical Assessment of Reduced Order Modeling Techniques for Dynamic Analysis of Jointed Structures With Contact Nonlinearities

机译:具有接触非线性的节理结构动力分析降阶建模技术的数值评估

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摘要

This work presents an assessment of classical and state of the art reduced order modeling (ROM) techniques to enhance the computational efficiency for dynamic analysis of jointed structures with local contact nonlinearities. These ROM methods include classical free interface method (Rubin method, MacNeal method), fixed interface method Craig-Bampton (CB), Dual Craig-Bampton (DCB) method and also recently developed joint interface mode (JIM) and trial vector derivative (TVD) approaches. A finite element (FE) jointed beam model is considered as the test case taking into account two different setups: one with a linearized spring joint and the other with a nonlinear macroslip contact friction joint. Using these ROM techniques, the accuracy of dynamic behaviors and their computational expense are compared separately. We also studied the effect of excitation levels, joint region size, and number of modes on the performance of these ROM methods.
机译:这项工作提出了对经典和最先进的降阶建模(ROM)技术的评估,以提高具有局部接触非线性的节理结构动态分析的计算效率。这些ROM方法包括经典的自由接口方法(Rubin方法,MacNeal方法),固定接口方法Craig-Bampton(CB),双重Craig-Bampton(DCB)方法,以及最近开发的联合接口模式(JIM)和试验矢量导数(TVD) )方法。考虑到两种不同的设置,将有限元(FE)铰接梁模型作为测试用例:一种是线性弹簧接头,另一种是非线性大滑移接触摩擦接头。使用这些ROM技术,分别比较了动态行为的准确性及其计算量。我们还研究了激发水平,联合区域大小和模式数量对这些ROM方法性能的影响。

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