• 实验表明周期分岔点与颗粒厚度无关

    Experiments reveal that the bifurcation points are independent on the bed thickness.

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  • 转子系统进入混沌主要途径周期分岔

    The main route to chaos for this rotor system is the period doubling bifurcation cascade.

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  • 应用胞映射方法研究系泊海洋生产平台周期运动及其倍周期分岔

    Cell-to-Cell Mapping Method was used to study the periodic orbits and period-doubling bifurcations of a moored ocean production platform subjected to waves.

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  • 讨论了有界噪声激励软弹簧杜芬振倍周期分岔混沌运动影响

    The effects of stochastic excitation on the period-doubling bifurcation and chaotic motions of the softening Duffing oscillator, are discussed in detail.

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  • 系统参数变化时,系统可经过倍周期分岔进入混沌产生阵发性混沌

    The system evolves chaotic motions through period-doubling bifurcation or intermittence chaos while the system parameters vary.

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  • 展示了这种非光滑系统倍周期分通向混沌的道路中存在擦边分岔行为。

    The existence of grazing bifurcation involved in the period-doubling bifurcation is shown clearly.

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  • 存在不平衡量时,系统稳可能产生周期周期分岔可能导致混沌振动

    The instability of the unbalanced system motion may result in doubling period bifurcation, almost periodic motion and chaotic motion.

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  • 结果表明只有非线性力作用时,转子存在由于油膜失稳而导致倍周期分岔

    The results show that when only the oil film forces are applied to the rotor, there only exists the period-doubling bifurcation arising from the instability of the lubricant in the bearings.

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  • 结果表明:在某些条件下,转轴系统可能产生周期周期分岔出现混沌振动

    The results show that the double period bifurcation, quasi period motion and chaotic motion can be found under some condition.

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  • 一定参数区域内,系统历经倍周期分分岔对称性破缺分岔形式通向混沌

    The system could undergo the period-doubling bifurcation, saddle-note bifurcation, symmetry-breaking bifurcation and so forth to chaos, as the control parameter was set on some certain intervals.

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  • 采用完全弹性模型了颗粒容器底冲击力,并给出了倍周期分岔现象解释

    Based on a completely inelastic bouncing ball model, a possible explanation for the bifurcation phenomena is presented.

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  • 固定参数激励频率阻尼,当参数激励值较小时运动周期的,大幅值激励会使运动通过周期分岔变为混沌

    For fixed damping and fixed excited frequency the motion of the beam under small amplitude of force is periodic, but becomes chaotic through period doubling bifurcation with increase of the force.

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  • 固定参数激励频率阻尼,当参数激励值较小时运动周期的,大幅值激励会使运动通过周期分岔变为混沌

    For fixed damping and fixed excited frequency the motion of the beam under small amplitude of force is periodic, but becomes chaotic through period doubling bifurcation with increase of the force.

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