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Axial Interaction Behavior of Offshore Pipelines

机译:海上管道的轴向相互作用行为

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Pipe-soil interaction behavior in the axial direction is an important design parameter for offshore pipe design. Governed primarily by the axial interaction behavior, the thermal expansion of the pipe wall could cause the pipe to either freely expand, or buckle on the founded seabed. Therefore, it emphasized that by controlling the axial interaction behavior, the overall pipe on-bottom stability can be effectively managed. This paper presents laboratory experiments performed at Monash University to understand the pipe-soil interaction behavior in the axial direction. A special 2-D actuator test setup was developed to study axial walking of pipe on clay seabed under both drained and undrained loading conditions. The effect of pipe loading rate, pipe embedment, and shutdown cycles on axial friction force were explored. Based on the experimental results, the pre-peak, peak and residual components of the axial force-displacement curve were identified and explained using a simplified theoretical framework.
机译:轴向的管道 - 土相互作用行为是近海管道设计的重要设计参数。主要通过轴向相互作用行为治理,管壁的热膨胀可能导致管道自由膨胀,或在成立的海底上扣。因此,它强调,通过控制轴向相互作用行为,可以有效地管理整个管道上的底部稳定性。本文介绍了在蒙纳士大学进行的实验室实验,以了解轴向上的管道土相互作用行为。开发了一种特殊的2-D执行器测试设置,以研究粘土海底的管道轴向散步,涉及排水和不推迟的负载条件。探讨了管道装载速率,管芯片和关断周期对轴向摩擦力的影响。基于实验结果,使用简化的理论框架来识别和解释轴向力 - 位移曲线的预峰值,峰值和剩余部件。

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