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Beam buckling on random elastic foundations.

机译:随机弹性基础上的梁屈曲。

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摘要

This thesis explores the impact of the seafloor on the buckling load of an undersea pipeline via beam on elastic foundation buckling theory. Undersea pipelines are used for the conveyance of hydrocarbons from wells located on the seafloor to facilities located on the ocean surface. As worldwide demand for hydrocarbon fuels increases and onshore reserves are depleted hydrocarbon production is forced offshore and increasingly into deep water.;Increases in pipeline temperature and pressure result in axial loads sufficient to cause buckling. Pipelines do not require trenching in deep water as fisherman's trawling equipment is unlikely to come into contact with them. This lack of confinement results in lateral displacements from the as-laid position multiple pipe diameters in length. Pipeline design must predict and accommodate these lateral movements to avoid ruptures, which makes lateral buckling a subject of both industry and academic interest.;A finite element model of a beam on an elastic foundation of randomly varying stiffness (BOREF) has been developed to explore the impact of the seafloor foundation on the critical buckling load of a pipeline. The Monte-Carlo method is used in conjunction with a random field generator to calculate a probability of failure due to buckling for a given axial load. A realistic example is presented in the thesis.;This research demonstrates the importance of describing the mechanical properties of natural materials stochastically when modeling. In geotechnical analysis deterministic descriptions of natural materials can result in non-conservative predictions even in instances where the material has been characterized extensively.
机译:本文通过弹性地基屈曲理论,探讨了海床通过梁对海底管道的屈曲载荷的影响。海底管道用于将碳氢化合物从位于海底的油井输送到位于海面的设施。随着全球对碳氢燃料需求的增加和陆上储备的枯竭,碳氢化合物的生产被迫向海上开采并越来越多地进入深水中。管道温度和压力的升高导致轴向载荷足以引起屈曲。管道不需要在深水中挖沟,因为渔民的拖网设备不太可能与管道接触。这种局限性的缺乏导致从铺设位置开始横向位移,管道的长度为多个直径。管道设计必须预测并适应这些横向运动,以避免破裂,从而使横向屈曲成为业界和学术界都关注的问题。;已经开发了在随机变化刚度(BOREF)弹性基础上的梁的有限元模型,以探索海底地基对管道临界屈曲载荷的影响。蒙特卡洛方法与随机场发生器结合使用,可以计算给定轴向载荷下因屈曲而导致的失效概率。本文提出了一个现实的例子。这项研究证明了在建模时随机描述天然材料的力学性能的重要性。在岩土工程分析中,即使在对材料进行了广泛表征的情况下,对天然材料的确定性描述也可能导致非保守的预测。

著录项

  • 作者

    Bee, Geoffrey.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Engineering Petroleum.;Applied Mechanics.
  • 学位 M.S.
  • 年度 2013
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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