Experimental Study on Gravity Anchor for Optimum Design of Shear Key

Yun-su Han, Jeong-Woo Hong, M. Oh, Jongjin Jung
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Abstract

The purpose of a gravity anchor is to moor the installation barge affected by the environmental condition during installation at the offshore site. It is important to obtain the sufficient holding capacity to prevent the anchor from dragging. There are several methods to enhance the holding capacity such as increasing its self-weight or attaching the shear key at the bottom of the gravity anchor. However, increasing the self-weight of gravity anchor is a constrained approach due to the limitation of handling equipment capacity. Therefore, it is necessary that the shear key design should be optimized to maximize the holding capacity under limited handling equipment. In this paper, reduced scale model tests simulating rock condition mixed by sand, cement, and water are performed. The actual offshore mooring condition is simulated by using towing carriage. Five types of gravity anchor models which have different shear keys are assessed to examine what type of the shear key is the optimum design. The optimum shape and the number of shear keys for maximizing the holding capacity are assessed through this study. The results of this study can be utilized to design the shear key of gravity anchor.
用于剪切键优化设计的重力锚试验研究
重力锚的目的是在海上现场安装过程中,将受环境条件影响的安装驳船停泊。重要的是要获得足够的承载能力,以防止锚的拖曳。提高重力锚承载力的方法有增加其自重或在重力锚底部加装剪切键等。然而,由于装卸设备能力的限制,增加重力锚的自重是一种受限的方法。因此,有必要对剪切键进行优化设计,在搬运设备有限的情况下使承载能力最大化。本文进行了模拟砂、水泥、水混合岩石状态的缩比模型试验。利用拖船模拟了实际的近海系泊条件。对五种具有不同剪切键的重力锚模型进行了评估,以检验哪种剪切键是最优设计。通过本研究,评估了最大承载能力的最佳剪切键形状和数量。研究结果可用于重力锚抗剪键的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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