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Characterizing gas-solid fluidization by nonlinear tools: Chaotic invariants and dynamic moments

机译:用非线性工具表征气固流化:混沌不变性和动态矩

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摘要

The chaotic behavior, that gas-solid fluidization exhibits, has been characterized using the state space analysis. The space trajectories (attractor) of the dynamic system, reconstructed from the experimental time series of pressure fluctuations in the bed, have been described by the commonly used invariants: correlation dimension (CD), largest Lyapunov exponent (Ly) and the Kolmogorov entropy (K). The evolution of these invariants has been evaluated for bubbling, slugging and turbulent regime by analyzing the dependence on the flow regimes investigated. A new correlation has been proposed to predict the K for slugging regime. Due to some uncertainty involved in the delay determination for the attractor reconstruction, an attractor shape descriptor has been introduced. As shape descriptor, the dynamic moments of the attractor have been chosen and the morphological differences on the shape have been analyzed by varying the delay. The fluidization regimes have been characterized by the dynamic moments.
机译:气固流化所表现出的混沌行为已使用状态空间分析进行了表征。根据床层压力波动的实验时间序列重建的动力学系统的空间轨迹(吸引子)已由常用的不变量描述:相关维数(CD),最大Lyapunov指数(Ly)和Kolmogorov熵( K)。通过分析对流动态的依赖性,评估了这些不变量的演变过程的起泡,击打和湍流状态。已经提出了一种新的相关性来预测predict击状态的K。由于在吸引子重建的延迟确定中涉及一些不确定性,因此引入了吸引子形状描述符。作为形状描述符,选择了吸引子的动态力矩,并通过改变延迟来分析形状上的形态差异。流态化的特征在于动态力矩。

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