Comparisons for Global Dynamics of a Geometrically Nonlinear Oscillator among Single-, Double- and Quadruple-Well Configurations

Huihang Sun, H. Shang
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Abstract

This paper conducts a comparative analysis of the global dynamics of a harmonically excited oscillator with geometrical nonlinearities. Static analysis of the oscillatory system shows that adjusting the horizontal distance ratio from 1 to 0 can lead to single, double and quadruple well configurations successively. Intra-well and inter-well resonant responses are deduced analytically. Qualitative and quantitative results both reveal that the oscillator displays the stiffness–softening characteristic in cases of double and quadruple wells and the stiffness–hardening characteristic in the case of a single well. The initial-sensitive phenomenon jump is performed via fractal basins of attraction. Complex dynamical behaviors, including higher-order periodic responses and chaos, are also exhibited. The results demonstrate that the oscillator with a double or quadruple well configuration can achieve the inter-well response with large displacement, thus confirming its desirability in engineering applications of geometrically nonlinear oscillators.
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单孔、双孔和四孔几何非线性振荡器全局动力学比较
本文对具有几何非线性的谐波激励振荡器的全局动力学进行了比较分析。振荡系统的静态分析表明,将水平距离比从 1 调整到 0,可先后产生单井、双井和四井配置。对井内和井间共振响应进行了分析推导。定性和定量结果都表明,振荡器在双井和四联井的情况下表现出刚度软化特性,而在单井的情况下表现出刚度硬化特性。初始敏感现象跃迁是通过分形吸引盆地实现的。此外,还表现出复杂的动力学行为,包括高阶周期响应和混沌。结果表明,具有双井或四井配置的振荡器可以实现大位移的井间响应,从而证实了其在几何非线性振荡器工程应用中的可取性。
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