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A novel model order reduction scheme for fast and accurate material nonlinear analyses of large-scale engineering structures

机译:一种新型模型顺序降低方案,用于大型工程结构的快速准确材料非线性分析

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摘要

A new framework is developed for the fast and accurate analysis of large-scale engineering structures considering material nonlinearity. A fundamental linear model is constructed first by assigning nominal linear material parameters for each of the potentially nonlinear elements, and then, for each nonlinear element, a Nonlinear Deviation Force Vector (NDFV) is defined as the difference between the true nonlinear nodal force vector and the vector calculated using the nominal linear material parameters. In this way, the displacement of the nonlinear model can be expressed as a linear combination of a set of basis solutions of the fundamental linear model. These basis solutions include nodal displacement solutions due to the applied load and all unit components of NDFVs of nonlinear elements. Therefore, the values of these NDFVs, as combination coefficients in the displacement expression are the only unknowns for the whole structure and can be determined by considering a much smaller nonlinear equation system. It is noteworthy that no approximation is introduced in the proposed model order reduction scheme and the new scheme can be applied to the iterative solution process of both static and dynamic problems. Numerical examples are presented to show the effectiveness of the proposed scheme.
机译:开发了一种新的框架,用于考虑材料非线性的大规模工程结构的快速准确分析。首先通过为每个可能的非线性元件分配标称线性材料参数来构建基本线性模型,然后,对于每个非线性元件,非线性偏差力载体(NDFV)被定义为真正非线性节点力载体之间的差异使用标称线性材料参数计算的矢量。以这种方式,非线性模型的位移可以表示为基本线性模型的一组基础解的线性组合。这些基础解决方案包括由于施加的负载和非线性元件NDFV的所有单元组分而导致的节点位移解决方案。因此,这些NDFV的值作为位移表达式中的组合系数是整个结构的唯一未知,并且可以通过考虑更小的非线性方程式系统来确定。值得注意的是,在所提出的模型顺序降低方案中不引入近似值,并且可以应用于静态和动态问题的迭代解决方法。提出了数值示例以显示所提出的方案的有效性。

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