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AN INVESTIGATION OF THE LOAD CARRYING CAPACITY OF PIPELINES UNDER ACCIDENTAL AND LONGITUDINAL MOVING (SLIDING) LOADS

机译:意外和纵向移动(滑动)载荷下管道的承载能力的研究

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In accidental scenarios on subsea pipeline systems, like the collision of two adjacent subsea risers, accidental loads are commonly considered as stationary loads; stationary loads refer to loads that act only normal to the pipe at one location. Hence, the potential considerable effects of moving (sliding) accidental loads are neglected; the term moving load refers to the location with respect to time. Accordingly, recent works for ship hull structures show that the structural resistance mobilized against the moving loads is significantly lower than against the stationary loads of similar magnitude; when the loads incite plastic damage. As such, it is reasonable to study the effects of lateral motion of accidental loads on the response of subsea pipelines. This paper implements finite element analyses to investigate the load carrying capacity of a cylindrical shell subject to moving loads; LS-Dyna software package with explicit time-integration scheme is employed in numerical simulations; only crumpling deformation of the cylinders are studied. This research demonstrates that the capacity of a cylindrical shell subject to a moving load, causing plastic damage, is considerably less than its capacity under a stationary load of similar magnitude.
机译:在海底管道系统的意外情况下,例如两个相邻的海底立管的碰撞,意外载荷通常被认为是固定载荷。固定载荷是指仅在一个位置垂直于管道作用的载荷。因此,忽略了移动(滑动)意外负载的潜在重大影响。术语“移动负载”是指相对于时间的位置。因此,最近对船体结构的研究表明,抵抗移动载荷的结构阻力明显低于抵抗类似强度的静止载荷。当负载引起塑料损坏时。因此,研究意外载荷的横向运动对海底管道响应的影响是合理的。本文通过有限元分析来研究圆柱壳在移动载荷作用下的承载能力。数值模拟采用具有显式时间积分方案的LS-Dyna软件包。仅研究气缸的压皱变形。这项研究表明,圆柱壳承受移动载荷的能力(导致塑性破坏)远小于其在类似大小的固定载荷下的载荷。

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