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ON THE MECHANICS OF A SUBSEA GAS PIPELINE VIBRATION

机译:地下管道振动的力学研究

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摘要

A well-posed boundary value problem of mathematical physics, governing the vibration characteristics of a deep offshore gas transmission pipeline, as influenced by the mechanics of fluid-structure-mud flow interaction is formulated. For this problem, a segment of a gas transmission pipeline is partially buried in the muddy soil under the ocean-floor, which is idealized as an elastic beam on an elastic foundation, is investigated analytically. By employing integral transforms, closed form analytical results, for the dynamic interaction response and the two natural frequencies associated with each mode of vibration are derived. In particular, the effect of operating variables such as the internal fluid transmission velocity, temperature and pressure variations, compressibility factor, geotechnical properties, debris and mud flow velocities are demonstrated for design analysis and field applications.
机译:提出了一个数学物理的适度边界值问题,该问题控制着深海海上输气管道的振动特性,受流体-结构-泥浆流相互作用的力学影响。针对该问题,将输气管道的一部分埋入海底下的泥土中,对其进行分析研究,将其理想化为在弹性地基上的弹性梁。通过采用积分变换,可以得出闭合形式的分析结果,以获得动态相互作用响应,并得出与每种振动模式相关的两个固有频率。尤其是,对于设计分析和现场应用,论证了诸如内部流体传输速度,温度和压力变化,可压缩系数,岩土特性,碎屑和泥浆流速等操作变量的影响。

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