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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Mechanics of Drag Embedment Anchors in a Soft Seabed
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Mechanics of Drag Embedment Anchors in a Soft Seabed

机译:软海底阻力嵌入锚的力学

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摘要

This paper presents an analysis of the load capacity and trajectory of a drag embedment anchor in a soft seabed. Anchor capacity relationships are developed for an idealized anchor comprising a rectangular fluke and a cylindrical shank. Geometric variables considered for the anchor include fluke length, fluke thickness, shank length, angle between fluke and shank, and shank thickness. Parametric studies are presented investigating the effect of these variables on anchor capacity and performance. A method of anchor trajectory prediction during drag embedment is developed by considering anchor behavior in conjunction with the mechanics of the anchor line. The anchor trajectory simulations indicate that an equilibrium condition rapidly develops during embedment in which the rate of anchor rotation is identical to the rate of change in the anchor line uplift angle at the shackle point. At the equilibrium state, the anchor load capacity normalized by soil strength remains constant and the anchor is in a state of incipient rotation. The anchor line angle at the seabed also influences anchor trajectory. This angle varies throughout embedment according to the mechanics of the anchor line in both the seabed and the water column.
机译:本文对软质海底阻滞锚的承载能力和轨迹进行了分析。针对包括矩形fl子和圆柱柄的理想化锚定了锚定能力关系。考虑到锚的几何变量包括fl钉长度,fl钉厚度,刀柄长度,uke钉和刀柄之间的角度以及刀柄厚度。提出了参数研究,以调查这些变量对锚固能力和性能的影响。通过结合锚固线的力学特性来考虑锚固行为,发展了一种阻力嵌入过程中锚固轨迹预测的方法。锚定轨迹仿真表明,在嵌入过程中,平衡条件迅速发展,其中锚定旋转速度与卸扣点处锚定线上倾角的变化率相同。在平衡状态下,通过土壤强度归一化的锚杆承载能力保持恒定,并且锚杆处于初始旋转状态。海底的锚线角度也会影响锚的轨迹。在整个埋入过程中,该角度会根据海床和水柱中锚固线的力学而变化。

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