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Optimum analysis of offshore structures lifting padeyes using finite element method

机译:有限元法优化海上海洋结构吊板的分析。

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摘要

Padeye design and analysis plays an important roles during the lifting, load out and installation of heavy structures. This study addressed the different dynamic amplification factors that are adapted in the oil and gas industry based on different design codes. This study explains the impact of limiting the effective thickness of the cheek plate with respect to the main plate of the padeye and the advantages of increasing the effective thickness of the cheek plates. It also touched on the fabrication requirements to achieve the required effective thickness of the cheek plates. In addition, a sensitivity study about the impact of the out of plane force on the padeye design is addressed and the maximum out of plane angle that shall be considered is recommended. A finite element analysis using London University Structure Analysis System (LUSAS), is conducted and compared with the hand calculation. The benefits and advantage of using FE analysis is addressed in this study. At the end of this research a guideline on the design of the padeye is developed. It has been found that the dynamic amplification factor can be reduced to a lower value of 1.15 instead of 1.35. The effective thickness of the cheek plate can be increased to 100% with proper fabrication and welding sequence. Finite Element analysis is a good tool to have better analysis and design of the lifting padeyes.
机译:Padeye的设计和分析在举升,装载和安装重型结构中起着重要作用。这项研究基于不同的设计规范,针对石油和天然气行业适应了不同的动态放大系数。这项研究解释了限制颊板有效厚度相对于眼板主板的影响,以及增加颊板有效厚度的优点。它还涉及制造要求以实现所需的颊板有效厚度。此外,还针对平面外力对padeye设计的影响进行了敏感性研究,并建议应考虑最大平面外角。使用伦敦大学结构分析系统(LUSAS)进行了有限元分析,并与手工计算进行了比较。本研究探讨了使用有限元分析的好处和优势。在这项研究的最后,制定了关于板状眼的设计指南。已经发现,动态放大系数可以减小到较低的1.15而不是1.35。通过适当的制造和焊接顺序,颊板的有效厚度可以增加到100%。有限元分析是一个很好的工具,可以对起重板进行更好的分析和设计。

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