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Effect of initial stress on periodic Timoshenko beams resting on an elastic foundation

机译:初始压力对弹性基础休息周期Timoshenko梁的影响

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摘要

A novel numerical approach based on the weak form quadrature element method is developed to study the effect of initial stress on the attenuation zones and attenuation coefficients of periodic Timoshenko beams resting on a two-parameter elastic foundation. For some special cases, comparisons with other related investigations are conducted to validate the proposed method, and good agreement is found. The results show that the compressive initial stress enhances the maximum attenuation in the second attenuation zone while it weakens the maximum attenuation in the first attenuation zone. In addition, based on the detailed modal analysis, simplified models are proposed to determine the bound frequencies of the lowest attenuation zone. Furthermore, frequency domain analysis and transient response analysis for a beam with finite unit cells are performed to verify the theoretical analysis of the infinite-unit cell beam. The present investigation is very helpful for the design and application of periodic strip foundations and pipelines for vibration isolation in buildings and infrastructures.
机译:开发了一种基于弱形正交元素方法的新型数值方法,以研究初始应力对两个参数弹性基础上休息周期蒂米孔梁的衰减区和衰减系数的影响。对于一些特殊情况,进行了与其他相关调查的比较,以验证拟议的方法,并找到良好的协议。结果表明,压缩初始应力增强了第二衰减区中的最大衰减,同时它削弱了第一衰减区中的最大衰减。另外,基于详细的模态分析,提出了简化模型来确定最低衰减区的结合频率。此外,执行具有有限单元电池的光束的频域分析和瞬态响应分析以验证无限单元电池束的理论分析。本研究非常有助于对周期性地带基础和管道的设计和应用,用于建筑物和基础设施中的振动隔离。

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