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CENTRIFUGE MODELLING OF PIPE PENETRATION DUE TO DYNAMIC LAY EFFECTS

机译:以动态划分效应为管渗透的离心模型

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On-bottom pipelines are subjected to small-amplitude oscillations during installation due to dynamic motion of the pipe within the touchdown zone. This motion is driven by the movement of the lay vessel and hydrodynamic excitation of the suspended length of pipe. The increase in as-laid embedment caused by these dynamic lay effects has a significant influence on various aspects of the performance of the pipeline. A series of centrifuge model tests was conducted to assess the change in embedment of an unburied pipeline subjected to small-amplitude horizontal oscillations. Two clay samples were used - kaolin clay and a soft high plasticity clay recovered from offshore Angola. Dynamic lay effects were simulated by applying a constant vertical load to the model pipeline then imposing packets of cycles of horizontal motion, representing the pipe movement within the touchdown zone. The results demonstrate that a few (<5) small amplitude cycles (±0.05D) can double or triple the pipe embedment, and a number of cycles that might represent the entire lay process (~100) could increase the pipe embedment by up to 8 times relative to the static embedment under the same vertical load. The amount of penetration is governed by the vertical load level relative to the bearing capacity, and the oscillation amplitude. Significant differences were observed between the two clays. The high plasticity clay was much more susceptible to softening and increased embedment under dynamic loading.
机译:由于在触地区内管道的动态运动,在安装过程中,在安装过程中受到小幅度振荡的。这种运动是由悬浮管的悬浮长度的流动血管的运动和流体动力激发的驱动。由这些动态产权效应引起的铺设嵌入的增加对管道性能的各个方面产生了重大影响。进行了一系列离心模型试验,以评估嵌入未抵抗水平振荡的未挤压管道的变化。使用了两种粘土样品 - 高岭土粘土和从海鲜安哥拉回收的软高塑性粘土。通过将恒定的垂直负载应用于模型管道,然后施加水平运动循环分组来模拟动态铺设效果,该循环循环,表示触地区内的管道运动。结果表明,几(<5)较小的幅度循环(±0.05d)可以加倍或三倍的管芯片,并且可能代表整个敷积过程(〜100)的循环可能会增加管道嵌入相对于相同垂直载荷下的静态嵌入8次。渗透量由相对于承载能力的垂直载荷水平和振荡幅度控制。在两个粘土之间观察到显着差异。高塑性粘土在动态载荷下更容易易于软化和增加的嵌入。

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