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A Nonlinear Dynamical Systems Modelling Approach Unveils Chaotic Dynamics in Simulations of Large Strain Behaviour of a Granular Material Under Biaxial Compression

机译:非线性动力学系统建模方法揭示双轴压缩粒度大规模应变行为模拟中的混沌动力学

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We consider bulk measurements of shear stress in a discrete element simulation of biaxial compression of a densely packed granular assembly in the failure regime in the presence of a single persistent shear band. The strain evolution of the stress ratio is treated as a time series and data based methods from nonlinear dynamical systems theory are applied to characterise the underlying dynamics - assuming a low-dimensional deterministic description. Standard nonlinear time series methods are used to characterise the psuedo-time series as consistent with chaos. Nonlinear modelling combined with novel complex network based descriptors of model simulations (which allow for a precise characterisation of the underlying dynamics) indicate that the original system can be described as a bistable transient chaotic dynamical system. There exist two different chaotic basins of attraction - one corresponding to slow and large amplitude dynamics and one to fast and small amplitude. The as yet unknown high-dimensional dynamics of multiscale grain rearrangments modelled here as the presence of dynamical noise forces the system to switch between the two regimes.
机译:我们考虑在单个持久剪切带的存在下,在故障制度中的密集包装粒度组件的双轴压缩中的离散元件模拟中的剪切应力的体积测量。应应力比的应变演变作为时间序列和来自非线性动力学系统理论的基于数据的方法,以表征底层动态 - 假设低维度确定性描述。标准非线性时间序列方法用于表征PSUEDO-TIME序列与混沌一致。非线性建模与新型复杂网络的模型模拟描述符相结合(允许基础动态的精确表征)表明原始系统可以被描述为双稳态瞬态混沌动态系统。存在两种不同的吸引力的混沌盆地 - 一个对应于慢速和大振幅动态的一个,一个到一个快速且小的幅度。在这里建模的多尺度谷物重排的尚未取消的高维动力学作为动态噪声的存在力迫使系统在两种方案之间切换。

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