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Three-dimensional behavior of embedded anchor lines under out-of-plane loading

机译:外平面负载下嵌入式锚线的三维行为

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摘要

As key components of the mooring system, anchor lines connect the anchors and the floating moored platform. When the platform suffers extreme environmental loadings, the mooring system may partially fail, such as breaking of one or more anchor lines within the spread. Hence, the orientation of the intact lines may change dramatically and the anchor may even present a three-dimensional motion in the seabed, attributed to the long-distance drift of the floater. In such a scenario, both the anchor and the anchor line will experience out-of-plane loading. To evaluate the anchor capacity and the anchor behavior under out-of-plane loading, the three-dimensional behavior of embedded anchor lines should be fully understood in advance. In the present work, a theoretical method is developed to analyze the three-dimensional behavior of embedded anchor lines, including the three-dimensional profile and tension transmitting properties of the line both in clay and in sand. A systematic comparative study is performed to examine the efficiency of the proposed method. Then, two examples of application are designed to analyze the three-dimensional profile and tension transmitting properties of the embedded line under out-of-plane loading. The first corresponds to the partial failure of mooring systems, where an offset of the platform occurs with the anchor fixed at the original penetration. The second corresponds to an engineering case, where the anchor is motivated by the drifting platform and dives in the seabed.
机译:作为系泊系统的关键部件,锚线连接锚和浮动停泊平台。当平台遭受极端的环境载荷时,系泊系统可以部分失效,例如在涂抹内断开一个或多个锚线。因此,完整线的取向可以显着变化,并且锚可以甚至可以在海底上呈现三维运动,其归因于浮子的长距离漂移。在这样的场景中,锚和锚线都将体验面外负载。为了评估面外负载下的锚固能力和锚度行为,预先应当完全理解嵌入式锚线的三维行为。在本作工作中,开发了理论方法以分析嵌入式锚线的三维行为,包括粘土和沙子中的线的三维曲线和张力传递特性。进行系统的对比研究以检查所提出的方法的效率。然后,设计了两个应用示例,用于分析在面外负载下嵌入线的三维轮廓和张力传递特性。首先对应于系泊系统的部分故障,其中平台的偏移在原始穿透处固定在锚固处。第二个对应于工程壳体,其中锚固件被漂移平台的激励和潜水在海底上。

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