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Transversal Vibration of Chain Ropeway System Having Support Boundary Conditions with Polygonal Action

机译:具有边界作用并具有多边形作用的链索系统的横向振动

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The purpose of this paper is to characterize the modal parameters and transverse vibrations of a monochain ropeway system for hilly orchards. The moving chain is modeled with uniform distribution and concentrated inertial loads. In order to study the dynamical behavior of the moving chain, Hamilton’s principle is applied to obtain the homogenous differential equation of transverse vibration. With the boundary conditions subjected to the polygonal action caused by chain-support engagement, the coupling effect of concentrated load, variable tension, and time-dependent speed on transverse vibration is investigated. The contribution of residue of singularity to total vibrations in phase space is numerically analyzed by using the Laplace transform method. The influence of the boundary condition considering the polygonal action is investigated in terms of excitation frequency and amplitude coupled with transport speed. The transverse vibrations are calculated numerically and measured experimentally. The numerical results are in agreement with the experimental data, which suggest that the amplitude and frequency of vibration are proportional to the value of propagation speed. The analytical solution to the moving chain problem provides a feasible reference for its stability analysis and wind-induced vibration control.
机译:本文的目的是表征丘陵果园单链索道系统的模态参数和横向振动。移动链的建模具有均匀的分布和集中的惯性载荷。为了研究运动链的动力学行为,应用汉密尔顿原理获得了横向振动的齐次微分方程。在边界条件受到链-支撑啮合引起的多边形作用的情况下,研究了集中载荷,可变张力和随时间变化的速度对横向振动的耦合作用。通过使用拉普拉斯变换方法,数值分析了奇异残差对相空间总振动的贡献。考虑激发作用的频率和幅度以及传输速度,研究了考虑多边形作用的边界条件的影响。横向振动的数值计算和实验测量。数值结果与实验数据吻合,表明振动的幅度和频率与传播速度的值成正比。运动链问题的解析解为其稳定性分析和风致振动控制提供了可行的参考。

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