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New Numerical Results from Simulations of Beams and Space Frame Systems with a Tuned Mass Damper

机译:带有调谐质量阻尼器的梁和空间框架系统仿真的新数值结果

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摘要

In working processes, mechanical systems are often affected by both internal and external forces, which are the cause of the forced vibrations of the structures. They can be destroyed if the amplitude of vibration reaches a high enough value. One of the most popular ways to reduce these forced vibrations is to attach tuned mass damper (TMD) devices, which are commonly added at the maximum displacement point of the structures. This paper presents the computed results of the free vibration and the vibration response of the space frame system under an external random load, which is described as a stationary process with white noise. Static and dynamic equations are formed through the finite element method. In addition, this work also establishes artificial neural networks (ANNs) in order to predict the vibration response of the first frequencies of the structure. Numerical studies show that the data set of the TMD device strongly affects the first frequencies of the mechanical system, and the proposed artificial intelligence (AI) model can predict exactly the vibration response of the first frequencies of the structure. For the forced vibration problem, we can find optimal parameters of the TMD device and thus obtain minimum displacements of the structure. The results of this work can be used as a reference when applying this type of structure to TMD devices.
机译:在工作过程中,机械系统通常受内力和外力的影响,这是结构被迫振动的原因。如果振动幅度达到足够高的值,它们可能会被破坏。减少这些强迫振动的最流行方法之一是安装调谐质量阻尼器(TMD)设备,该设备通常添加在结构的最大位移点处。本文介绍了在外部随机载荷下空间框架系统的自由振动和振动响应的计算结果,这被描述为具有白噪声的平稳过程。静态和动态方程是通过有限元方法形成的。此外,这项工作还建立了人工神经网络(ANN),以预测结构第一频率的振动响应。数值研究表明,TMD设备的数据集强烈影响机械系统的第一频率,并且所提出的人工智能(AI)模型可以准确预测结构的第一频率的振动响应。对于强迫振动问题,我们可以找到TMD设备的最佳参数,从而获得结构的最小位移。将这种类型的结构应用于TMD器件时,这项工作的结果可以用作参考。

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