首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >WORLD FIRST FATIGUE S-N CURVE FOR BONDED REINFORCEMENTS FOR FPSO APPLICATION
【24h】

WORLD FIRST FATIGUE S-N CURVE FOR BONDED REINFORCEMENTS FOR FPSO APPLICATION

机译:FPSO应用的世界首个结合强度增强的疲劳S-N曲线

获取原文

摘要

Steel is the most common construction material in the Oil & Gas industry, and it begins to rust the day it is cast. This observation raises several challenges for the asset integrity and life extension of all offshore units. Therefore, for the ageing FPSOs (>10 years), frequent and costly structural maintenance operations in hazardous environment may be required to repair their hull. While a standard ship can go to dry-dock for "crop and renew" maintenance operations through standard hot works techniques, a permanently moored asset has to be maintained in situ. The challenge is to perform these offshore structural maintenance operations with no production disruption while maximizing safety even for the most stressed areas such as a mid-ship deck plating. COLDSH1ELD, a co-development between COLD PAD, TOTAL and IFP Energies nouvelles, has been set up to meet this very challenge. This innovative alternative to "crop and renew" is covered by approval certificate from Class. COLDSH1ELD stops the corrosion and restores hull structural strength. Two industrial applications have been performed so far. Among the steps to be taken to demonstrate that such repair can be considered as permanent, it was mandatory to characterize the fatigue behavior of this reinforcement solution. While the fatigue behavior of steel has been an important research topic since the early eighties of the last century, its understanding for bonded composite materials is still at its infancy. Indeed, for the time being there is - to our knowledge -no S-N curve for structural bonded reinforcements. Full scale coupon specimen fatigue tests of the structural bonded reinforcements were conducted by COLD PAD, third-partied by Bureau Veritas and in collaboration with two laboratories (private and public) in order to study the adhesive fatigue. A statistical analysis was performed according to international standards. The resulting S-N curve is fit for industrial fatigue design. It demonstrates a comfortable fatigue strength (S-N curve presenting a slope of 9). This paper presents the results of a fatigue life assessment campaign of COLDSHIELD including the experimental setup, the fatigue test results, and the numerical analyses. It details the reason why the design is compatible with a stress-based approach. It also explains the conclusions that can be derived in terms of fatigue life for a deck repair campaign.
机译:钢铁是石油和天然气行业中最常见的建筑材料,并且从铸造之日起便开始生锈。该观察结果对所有离岸单位的资产完整性和使用寿命提出了一些挑战。因此,对于老化的FPSO(> 10年),可能需要在危险环境中进行频繁且昂贵的结构维护操作,以修复其船体。虽然标准船可以通过标准热加工技术进入干船坞进行“裁剪和更新”维护操作,但必须将永久性系泊的资产保持在原地。面临的挑战是如何在不中断生产的情况下进行这些海上结构维护操作,同时即使在船上中部甲板等应力最大的区域,也要最大限度地提高安全性。 COLDSH1ELD是COLD PAD,TOTAL和IFP Energies nouvelles的共同开发项目,旨在应对这一挑战。 Class的批准证书涵盖了这种创新的“种植与更新”替代方法。 COLDSH1ELD可以阻止腐蚀并恢复船体的结构强度。迄今为止,已经进行了两个工业应用。在证明该修复可以视为永久性修复所要采取的步骤中,必须表征该增强解决方案的疲劳行为。自上世纪八十年代初以来,尽管钢的疲劳行为一直是重要的研究课题,但对粘结复合材料的了解仍处于起步阶段。实际上,就我们所知,暂时没有结构粘结增强材料的S-N曲线。由COLD PAD,必维国际检验集团(Bureau Veritas)第三方和两个实验室(私人和公共)合作进行了结构粘结增强材料的全尺寸试样试样疲劳测试,以研究胶粘剂疲劳。根据国际标准进行统计分析。所得的S-N曲线适合工业疲劳设计。它显示出舒适的疲劳强度(S-N曲线的斜率为9)。本文介绍了COLDSHIELD疲劳寿命评估活动的结果,包括实验设置,疲劳测试结果和数值分析。它详细说明了设计与基于压力的方法兼容的原因。它还解释了可以从甲板维修活动的疲劳寿命得出的结论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号