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Simplified modeling of beam vibrations induced by a moving mass by regression analysis

机译:通过回归分析简化由运动质量引起的梁振动的建模

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摘要

In this paper, we propose a fast computation of beam-type dynamic response to a moving mass. Dynamics of a single-span beam is first accurately computed with a semi-analytical procedure based on characteristic orthogonal polynomials (COPs), in the case of a force or a mass traveling across. A regression analysis is then adopted to automatically define the effects of the moving mass once the effects of the moving force are known. Best-fitting multivariable correlation splines, with strictly given coefficients, are obtained. The provided correlation splines conveniently interpolate the maximum design parameters of the base beam over a wide range of load inertia and velocity. Results provided are valid for any geometry and elastic stiffness of the beam, thanks to a properly set normalization factor here defined. Hence, practitioners are provided with an effortless and highly simplified direct prediction of design parameters when inertial interactions are taken into consideration.
机译:在本文中,我们提出了对移动质量的梁式动态响应的快速计算。首先在力或质量传播的情况下,基于特征正交多项式(COPs),使用半解析过程精确计算单跨度梁的动力学。一旦知道了移动力的影响,便采用回归分析来自动定义移动质量的影响。获得了具有严格给定系数的最佳拟合多变量相关样条。所提供的相关样条可以方便地在很大的负载惯性和速度范围内内插基础梁的最大设计参数。由于此处定义了正确设置的归一化因子,因此所提供的结果对于梁的任何几何形状和弹性刚度均有效。因此,当考虑惯性相互作用时,为从业人员提供了毫不费力且高度简化的设计参数直接预测。

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