间歇性
输送带
混乱的
块(置换群论)
弹簧(装置)
噪音(视频)
机械
带式输送机
物理
统计物理学
控制理论(社会学)
模拟
计算机科学
经典力学
工程类
数学
几何学
机械工程
人工智能
图像(数学)
湍流
控制(管理)
作者
Bulcsú Sándor,Ferenc Járai-Szabó,Tamás Tél,Zoltán Néda
标识
DOI:10.1103/physreve.87.042920
摘要
The dynamics of a spring-block train placed on a moving conveyor belt is investigated both by simple experiments and computer simulations. The first block is connected by spring to an external static point, and due to the dragging effect of the belt the blocks undergo complex stick-slip dynamics. A qualitative agreement with the experimental results can only be achieved by taking into account the spatial inhomogeneity of the friction force on the belt's surface, modeled as noise. As a function of the velocity of the conveyor belt and the noise strength, the system exhibits complex, self-organized critical, sometimes chaotic dynamics and phase transition-like behavior. Noise induced chaos and intermittency is also observed. Simulations suggest that the maximum complexity of the dynamical states is achieved for a relatively small number of blocks, around five.
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