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Impact adding bifurcation in an autonomous hybrid dynamical model of church bell

机译:教堂钟声自主混合动力模型中的冲击加分叉

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In this paper we present the bifurcation analysis of the yoke-bell-clapper system which corresponds to the biggest bell "Serce Lodzi" mounted in the Cathedral Basilica of St Stanislaus Kostka, Lodz, Poland. The mathematical model of the system considered in this work has been derived and verified based on measurements of dynamics of the real bell. We perform numerical analysis both by direct numerical integration and path-following method using toolbox ABESPOL (Chong, 2016). By introducing the active yoke the position of the bell-clapper system with respect to the yoke axis of rotation can be easily changed and it can be used to probe the system dynamics. We found a wide variety of periodic and non-periodic solutions, and examined the ranges of coexistence of solutions and transitions between them via different types of bifurcations. Finally, a new type of bifurcation induced by a grazing event - an "impact adding bifurcation" has been proposed. When it occurs, the number of impacts between the bell and the clapper is increasing while the period of the system's motion stays the same.
机译:在本文中,我们介绍了轭-铃-拍板系统的分叉分析,该系统对应于安装在波兰罗兹St Stanislaus Kostka大教堂的最大铃铛“ Serce Lodzi”。本工作中考虑的系统数学模型已基于实铃的动态测量结果导出并验证。我们使用工具箱ABESPOL(Chong,2016)通过直接数值积分和路径跟踪方法进行数值分析。通过引入主动叉架,可以轻松更改钟形拍板系统相对于叉架旋转轴的位置,并可以用来探测系统动力学。我们发现了各种各样的周期和非周期解,并通过不同类型的分叉研究了溶液共存的范围以及它们之间的过渡。最后,提出了一种由放牧事件引起的新型分叉-“影响加分叉”。发生这种情况时,钟声和拍手之间的撞击次数会增加,而系统的运动周期保持不变。

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