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Transverse Vibrations of Underground Pipelines with Different Interaction Laws of Pipe with Surrounding Soils

机译:地下管道横向振动与周围土壤不同的管道不同互动规律

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Studies on the effect of changing the stiffness coefficient along the length of the pipeline on its resonant vibration mode are considered in the paper. A computational model of transverse vibrations of the pipeline located in soil with different properties is created. Theoretical and computational studies to solve the problems of stability of underground pipelines located in the soils with different properties under seismic effects are carried out. It is revealed that the vibratory process of the pipeline can be realized at frequencies close to resonance. The results of the study are presented as curves of distribution of displacements of pipeline sections along the length at dimensionless frequencies. When the pipeline vibrates with a frequency close to the resonant frequency, the displacements of pipeline sections can take very large values. It is shown that at frequencies close to resonance, the values of moments can be large in the pipeline sections, which are the reasons for the loss of pipeline stability.
机译:纸张中考虑了沿着管道的长度改变刚度系数的影响。建立了位于具有不同性质的土壤中的管道横向振动的计算模型。实施了解决位于地震效应下具有不同性质的土壤中地下管道稳定性问题的理论和计算研究。据透露,管道的振动过程可以在靠近谐振的频率下实现。该研究的结果作为沿着长度频率的长度分布的管道部分分布的曲线。当管道用频率接近谐振频率的频率振动时,管道部分的位移可以取得非常大的值。结果表明,在靠近谐振的频率下,管道部分中的矩的值可以很大,这是丢失管道稳定性的原因。

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