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Assessment of Jack-up Survival in Severe Storms

机译:暴风雨中自升式生存的评估

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This paper reports on a study to assess the performance of two LeTourneau 116-C Jack-up Rigs, the GSF Adriatic III and GSF Adriatic VII, under extreme storm loading conditions in the northern Gulf of Mexico during Hurricane Rita. The objective of this study was to provide a demonstration of pushover methodology for the assessment of the performance of LeTourneau 116-C Jack-up Rigs during extreme storm loading by way of comparison of analysis results to actual field experience. This objective was pursued using nonlinear pseudo-static pushover analysis within the framework of SNAME Bulletin 5-5, but incorporating more realistic foundation performance parameters including recommendations of a SAGE Study of Spud Can Fixity in Cohesive Soils for the International Association of Drilling Contractors (IADC). See Templeton, Lewis and Brekke (2003), Templeton, Brekke and Lewis (2005), and Templeton (2006). In the cases checked in this study, foundation collapse always occurred prior to any indication of nonlinear structural overload. This indicates that nonlinear foundation pushover analysis (with a linear treatment of the structure) is a useful method for survival analyses in cases of deep penetration in clay. By contrast, it also indicates that pushover analyses using a nonlinear structural model with linear (or linearized) treatment of the foundation would not be expected to produce useful results in similar cases of deep penetration in clay soils. The results for the case of the Adriatic III in Hurricane Rita are that, consistent with the actual outcome, the Adriatic III can be shown theoretically to have withstood the hindcast environmental loads. However, an aggressive treatment of foundation performance and dynamic amplification is necessary to show this. More specifically, the following analysis assumptions are necessary: 1. In addition to Bulletin 5-5 recommendations, the additional SAGE recommendations regarding spud can ultimate rotational and horizontal capacity as well as spud can rotational stiffness are necessary. 2. It is also necessary to use an allowance for foundation hysteretic damping. In the case of deep penetrations in clay, foundation hysteretic damping limits dynamic amplification to modest amounts. 3. It is further necessary to account for lateral soil reactions on the legs. Application of lateral soil reactions via p-y curves for all 4 chords was required. Additionally, the use of enhanced p-y formulations based on results of newly published work (see Templeton, 2009) was required. The results for the Adriatic VII show that the rig should not have withstood the storm loads during Hurricane Rita, consistent with the actual outcome, even with the application of the aggressive foundation assumptions used for the Adriatic III rig in the same hurricane. The results indicate foundation collapse for Adriatic VII in Rita. On the basis of the analysis results presented in this report, the Adriatic III should have been expected to survive the loads corresponding to hindcast conditions for its exposure to Hurricane Rita. The Adriatic VII, however, according to results of similar analysis should have experienced collapse during the same hurricane - triggered by the foundation. Both of these expected outcomes are consistent with the actual outcomes during the hurricane. Combined, these results provide a very useful calibration of the best present methods for nonlinear foundation pushover analysis of the ability of independent leg jack-up rigs to survive extreme storm loading, particularly for cases of deep penetration in clay.
机译:本文报道了一项研究,以评估飓风丽塔期间在墨西哥湾北部极端风暴负荷条件下,两只LeTourneau 116-C自升式钻机GSF Adriatic III和GSF Adriatic VII的性能。这项研究的目的是通过将分析结果与实际经验进行比较,来演示用于评估LeTourneau 116-C自升式钻机在极端风暴载荷下的性能的推覆方法。此目标是在SNAME公告5-5的框架内使用非线性伪静态推覆分析来实现的,但结合了更现实的地基性能参数,包括针对国际钻探承包商协会(IADC)的SAGE研究粘性土壤中的桩头钉固定性的建议)。参见Templeton,Lewis和Brekke(2003),Templeton,Brekke和Lewis(2005)和Templeton(2006)。在本研究中检查的情况下,基础坍塌总是发生在任何非线性结构过载迹象之前。这表明非线性基础推覆分析(对结构进行线性处理)是在粘土深层渗透情况下进行生存分析的有用方法。相比之下,它也表明,使用非线性结构模型对基础进行线性(或线性化)处理的推覆分析在粘土深层渗透的类似情况下不会产生有用的结果。在丽塔飓风中使用亚得里亚三世的结果是,与实际结果一致,理论上可以证明亚得里亚三世抵御了后继环境负荷。但是,要证明这一点,必须对基础性能和动态放大进行积极的处理。更具体地说,以下分析假设是必要的:1.除了5-5号建议外,还需要有关桩头极限旋转和水平承载力以及桩头旋转刚度的其他SAGE建议。 2.还必须对基础滞后阻尼使用余量。在深层渗透粘土的情况下,地基滞回阻尼将动态放大率限制在适度范围内。 3.还需要考虑腿上的土壤侧向反应。需要通过p-y曲线对所有4个和弦应用土壤侧向反应。此外,还需要根据新发表的研究成果使用增强的P-Y配方(请参见Templeton,2009年)。亚得里亚海VII的结果表明,即使在同一飓风中使用了用于亚得里亚海III钻机的激进基础假设,该钻机也不应承受飓风丽塔期间的暴风雨负荷,与实际结果一致。结果表明,Rita的Adriatic VII的地基坍塌。根据本报告中提出的分析结果,应该预期亚得里亚三世能够承受因后天暴晒而遭受的相应负荷。然而,根据类似分析的结果,亚得里亚海七世在同一场飓风中应经历了坍塌-这是由基金会引发的。这两个预期结果都与飓风期间的实际结果一致。结合起来,这些结果为非线性基础下垂分析中独立腿部自升式钻机承受极端暴风荷载的能力(特别是对于粘土深层渗透的能力)进行非线性基础下垂分析提供了一种非常有用的校准方法。

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