Stability, bifurcation, and large-amplitude vibration analysis of a symmetric magnetic spherical pendulum.

IF 2.9 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES Science Progress Pub Date : 2025-01-01 DOI:10.1177/00368504251315805
Akuro Big-Alabo, Maruchi Triumph Chuku
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Abstract

Existing studies on the symmetric spherical pendulum are limited to small- and moderate-amplitude vibrations. This study was conducted to obtain accurate solutions for analysis of the large-amplitude vibration of a symmetric magnetic spherical pendulum using the continuous piecewise linearization method (CPLM). The stability conditions and bifurcation of the pendulum were derived based on the critical points, while the CPLM was used to estimate the frequency response and vibration histories to less than 0.1% and 1.0% relative error respectively when compared to numerical solutions. The CPLM was found to be significantly more accurate than the Laplace transform homotopy perturbation method and predicted the large-amplitude bi-stable vibrations accurately. The stability analysis that was conducted enabled the characterization of all bounded symmetric vibrations based on the relationship between the cyclotron frequency and azimuthal velocity, whereas the bifurcation analysis confirmed that the symmetric vibrations can undergo pitchfork bifurcation that results in transition from single-well to double-well (or bi-stable) vibrations and vice versa. Finally, a parametric analysis was conducted to study the effect of the cyclotron frequency and uniform azimuthal velocity on the frequency-amplitude response and vibration histories The parametric analysis showed that the frequency-amplitude response has a strong dependence on the cyclotron frequency and azimuthal velocity for all amplitudes. On the other hand, the oscillation profile only depends on the cyclotron frequency and azimuthal velocity for some amplitudes. The results of this study can be applied in the design of energy harvesters and elliptic tanks for liquid transport.

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对称磁球摆的稳定性、分岔和大振幅振动分析。
对对称球摆的现有研究仅限于中小振幅振动。利用连续分段线性化方法(CPLM)对对称磁球摆的大振幅振动进行了精确求解。基于临界点推导了摆的稳定条件和分岔,利用CPLM计算得到的频率响应和振动历史相对于数值解的相对误差分别小于0.1%和1.0%。结果表明,CPLM比拉普拉斯变换同伦摄动法更准确地预测了大振幅双稳态振动。稳定性分析可以根据回旋频率和方位速度之间的关系对所有有界对称振动进行表征,而分岔分析证实,对称振动可以经历干草叉分岔,导致从单井到双井(或双稳定)振动的转变,反之亦然。最后,进行了参数化分析,研究了回旋频率和匀速方位速度对频幅响应和振动历史的影响。参数化分析表明,各幅值的频幅响应都与回旋频率和匀速方位速度有很强的依赖性。另一方面,振荡剖面只在一定幅度内取决于回旋加速器频率和方位速度。研究结果可用于能量采集器和液体输送椭圆罐的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science Progress
Science Progress Multidisciplinary-Multidisciplinary
CiteScore
3.80
自引率
0.00%
发文量
119
期刊介绍: Science Progress has for over 100 years been a highly regarded review publication in science, technology and medicine. Its objective is to excite the readers'' interest in areas with which they may not be fully familiar but which could facilitate their interest, or even activity, in a cognate field.
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