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Considerations on the Design of Keying Flap of Plate Anchors

机译:平板锚固键瓣设计的思考

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One of the critical issues associated with plate anchor performance and design relates to the reduction of the loss of embedment during the keying process. As deep water offshore sediments typically exhibit an increasing soil strength with depth, the loss of embedment results in a reduction in anchor bearing capacity. A keying flap hinged to the main plate has been developed and adopted by industry with the aim to reduce the loss of embedment by limiting the vertical motion of the anchor. However, uncertainties remain regarding the behavior and the performance of the keying flap. This paper presents a series of numerical analyses performed to investigate the flap rotation mechanism and the condition of activation of the flap. They are compared with existing centrifuge modeling. The numerical results validate the centrifuge observations and demonstrate the nonactivation of the keying flap for typical anchor pull-out conditions.
机译:与板锚性能和设计相关的关键问题之一涉及在键控过程中减少嵌入损失。由于深水近海沉积物通常随深度显示出不断增加的土壤强度,因此埋入物的损失导致锚固承载力降低。业已开发并采用了铰接在主板上的键控翼片,目的是通过限制锚固件的垂直运动来减少嵌入损失。但是,键控翼片的行为和性能仍存在不确定性。本文提出了一系列数值分析,以研究襟翼旋转机制和襟翼的激活条件。将它们与现有的离心机模型进行比较。数值结果验证了离心机的观测结果,并证明了在典型的锚定拉出条件下,键锁襟翼未激活。

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