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ANALYSIS AND NUMERICAL SIMULATION ON DYNAMIC RESPONSE OF BURIED PIPELINE CAUSED BY ROCK FALL IMPACTION

机译:落石冲击引起的埋地管道动力响应的分析与数值模拟

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Theoretical analysis methods are discussed to estimate additional stresses of shallow buried oil and gas pipeline caused by rock fall impaction. The process of impaction is simulated using finite elements software, in the model a 1 m~3 square shape falling hard rock impacts soil ground upright of pipe with a vertical velocity, and dynamic response of pipeline is analyzed. The impact force, soil additional stresses, pipe displacement and additional stresses in the impaction process are studied. The effect of pipeline buried depth and rock velocity to the impaction also discussed. Results show that the impaction process is very short and the duration is about 10~(-3) ~10~(-2)s. The maximum impact force has approximately direct ratio with the velocity of rock. The additional vertical stress in soil caused by impaction load has a stress concentration region near the surface of pipe, and its distribution has the similar pattern with that in static load, but has a faster attenuation from the impaction center to sidewall. The most dangerous pipe cross-section appears in the underside of impaction center, and the maximum additional equivalent stress appears in the top of the cross-section, and has an approximately direct ratio with the velocity of rock if other impaction conditions are confirmed. The buried depth of pipeline has major influence to impaction. Large thickness of soil cover has marked effect on improve the protection of pipeline. According the study, shallow buried pipeline has weak defense to rock fall. The additional internal force and stress of pipeline caused by impaction of rock fall can be approximately estimated using theoretical methods or numerical simulation.
机译:讨论了理论分析方法,以估计岩石崩落引起的浅埋油气管道的附加应力。利用有限元软件对撞击过程进行了模拟,在模型中以1 m〜3的正方形下落的坚硬岩石以垂直速度撞击管道地面,并分析了管道的动力响应。研究了冲击过程中的冲击力,土壤附加应力,管道位移和附加应力。还讨论了管道埋深和岩石速度对撞击的影响。结果表明,冲击过程很短,持续时间约为10〜(-3)〜10〜(-2)s。最大冲击力与岩石速度大致成正比。冲击载荷在土壤中产生的附加垂直应力在管道表面附近有一个应力集中区域,其分布与静载荷具有相似的模式,但从冲击中心到侧壁的衰减更快。最危险的管道横截面出现在撞击中心的下侧,最大附加等效应力出现在横截面的顶部,如果确定了其他撞击条件,则与岩石的速度近似成正比。管道的埋深对冲击有重要影响。较大的土壤覆盖层厚度对改善管道的保护效果显着。研究表明,浅埋管道对岩崩的防御能力较弱。可以通过理论方法或数值模拟来近似估计由于落石的撞击而引起的管道的附加内力和应力。

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