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Dynamic analysis of a beam resting on an elastic half-space with inertial properties

机译:具有惯性的弹性半空间上梁的动力分析

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This work gives a semi-analytical approach for the dynamic analysis of beams and plates resting on an elastic half-space with inertial properties. Such calculations have been associated with significant mathematical challenges, often leading to unrealizable computing processes. Therefore, this paper presents a detailed analysis of Green's function defining surface displacements of such a space in the contact zone with structures, which allows determination of reactive forces and other physical magnitudes. The obtained solutions can be applied to (ⅰ) study dynamic interaction between soil and structures, (ⅱ) determine transient wave fields caused by a seismic source, and (ⅲ) assess numerical computations with different numerical methods programs. Natural frequencies, natural shapes, and the dynamic response of a beam due to external harmonic excitation are determined. Eigenfrequencies and Eigenshapes are presented. Validation with a Boussinesq problem illustrates the inertia effect on the results of the dynamic analysis.
机译:这项工作提供了一种半解析方法,用于对具有惯性的弹性半空间上的梁和板进行动力分析。这种计算与重大的数学挑战相关联,常常导致无法实现的计算过程。因此,本文对格林函数进行了详细的分析,格林函数定义了此类空间在结构接触区域中的表面位移,从而可以确定反作用力和其他物理量。所获得的解可用于(ⅰ)研究土壤与结构之间的动力相互作用,(ⅱ)确定由震源引起的瞬态波场,以及(ⅲ)使用不同的数值方法程序评估数值计算。确定了固有频率,固有形状以及由于外部谐波激励而引起的光束动态响应。呈现了特征频率和特征形状。 Boussinesq问题的验证说明了惯性对动态分析结果的影响。

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