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Plate Anchor Failure Mechanism during Keying Process

机译:键控过程中的板锚破坏机理

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摘要

Plate anchors are commonly used in offshore industry to anchor floating facilities. They are installed vertically using a follower and subsequently rotated, through a process called keying, to exhibit their maximum area normal to the loading direction. This paper describes a series of centrifuge tests performed in order to investigate the influence of the keying on the overall performance of the anchor. Tests were conducted against a Perspex window in plane strain chambers containing normally consolidated clay. Particle Image Velocimetry (PIV) provided insights into the different failure mechanism generated during keying and information about the load inclination and load eccentricity minimising the loss of embedment and hence maximising the anchor performance. The loss of embedment after keying for different load inclinations and different load eccentricities was also quantified.
机译:板式锚通常在海上工业中用于锚固浮动设施。它们使用随动件垂直安装,然后通过称为键控的过程旋转,以显示出垂直于装载方向的最大面积。本文介绍了一系列离心测试,目的是研究键控对锚整体性能的影响。在包含正常固结粘土的平面应变室中,针对有机玻璃窗口进行了测试。粒子图像测速(PIV)提供了对在抠像期间生成的不同破坏机制的见解,以及有关载荷倾斜度和载荷偏心率的信息,从而最大程度地减少了嵌入物的损失,从而最大限度地提高了锚固件的性能。还对不同负载倾斜度和不同负载偏心度键控后嵌入的损失进行了量化。

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