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Applicability analyses on the end-bearing capacity of gravity installed anchors in clay

机译:粘土重力安装锚杆端部承载力的适用性分析

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? 2023 Elsevier LtdAs an efficient solution for deepwater moorings, gravity installed anchors (GIAs) have many attractive attributes and play a remarkable role in various deepwater applications. The end-bearing capacity factor offers an efficient method to evaluate GIA end bearing under complex conditions involving multiple factors. It can also assess total anchor bearing capacity. Based on numerous large deformation finite element (LDFE) analyses, two formulas have been developed to calculate the end-bearing capacity factors for GIAs in clay under quasi-static or dynamic conditions. Through rigorous statistical analysis, it is demonstrated that the formulas provide accurate predictions of the end-bearing capacity for various GIAs, particularly those with loading characteristics similar to OMNI-Max anchors, i.e., the padeye location and the loading angle. The contribution of the end bearing to the overall bearing capacity of GIAs is analyzed under various loading conditions. Furthermore, a comparative study proves that the formula accounting for the loading rate effect can be degenerated to evaluate the end-bearing capacity factor of the anchors under quasi-static conditions. The results provide a comprehensive understanding of the end bearing and offer an efficient solution for determining the total bearing capacity of various GIAs in clay under complex conditions. These findings contribute to the advancement of design and performance assessment of GIAs, enhancing their reliability and effectiveness in applications.
机译:?2023 爱思唯尔有限公司作为深水系泊的高效解决方案,重力安装锚 (GIA) 具有许多吸引人的属性,在各种深水应用中发挥着显着作用。端部承载力系数提供了一种在涉及多个因素的复杂条件下评估 GIA 端部承载力的有效方法。它还可以评估锚的总承载力。基于大量的大变形有限元(LDFE)分析,提出了两个公式来计算GIA在准静态或动态条件下粘土中的端承载力系数。通过严格的统计分析,该公式可以准确预测各种GIA,特别是那些具有与OMNI-Max锚相似的载荷特性的GIA,即凸眼位置和载荷角度。分析了不同荷载条件下端部支座对GIA整体承载力的贡献。此外,对比研究证明,在准静力条件下,考虑荷载速率效应的公式可以退化为锚杆的端部承载力系数。研究结果为确定复杂条件下粘土中各种GIA的总承载力提供了全面的理解,为确定粘土中各种GIA的总承载力提供了有效的解决方案。这些发现有助于推进 GIA 的设计和性能评估,提高其在应用中的可靠性和有效性。

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