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Rotary motion of the parametric and planar pendulum under stochastic wave excitation

机译:随机波激励下参量和平面摆的旋转运动

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In this paper a rotary motion of a pendulum subjected to a parametric and planar excitation of its pivot mimicking random nature of sea waves has been studied. The vertical motion of the sea surface has been modelled and simulated as a stochastic process, based on the Shinozuka approach and using the spectral representation of the sea state proposed by Pierson-Moskowitz model. It has been investigated how the number of wave frequency components used in the simulation can be reduced without the loss of accuracy and how the model relates to the real data. The generated stochastic wave has been used as an excitation to the pendulum system in numerical and experimental studies. For the first time, the rotary response of a pendulum under stochastic wave excitation has been studied. The rotational number has been used for statistical analysis of the results in the numerical and experimental studies. It has been demonstrated how the forcing arrangement affects the probability of rotation of the parametric pendulum.
机译:在本文中,对摆的旋转运动进行了参数化和平面激励,模拟了海浪的随机性,对其旋转进行了研究。基于Shinozuka方法并使用Pierson-Moskowitz模型提出的海态光谱表示法,海面的垂直运动已作为随机过程进行建模和仿真。已经研究了如何在不损失准确性的情况下减少模拟中使用的波频率分量的数量,以及模型如何与实际数据相关。在数值和实验研究中,所产生的随机波已被用作对摆系统的激励。首次研究了在随机波激励下摆的旋转响应。转数已用于数值和实验研究中结果的统计分析。已经证明了强制布置如何影响参数摆的旋转概率。

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