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RELIABILITY BASED ASSESSMENT OF MINIMUM REELABLE WALL THICKNESS FOR REELING

机译:基于可靠性的卷轴最小可重胶壁厚的评估

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The traditional calculation of minimum reelable wall thickness assumes that there is no variation in pipe properties, and that the curvature increases to a maximum on the reel. When a designer checks that a pipe will not buckle during reeling, the designer is usually checking that the curvature at which the peak plastic moment occurs is less than the vessel reel curvature. Design codes specify appropriate safety factors to ensure this requirement is met, where the curvature at which the peak plastic moment occurs is based upon the testing of pipes under pure moment loading. However, it is known that mismatches between adjacent pipe ends at a weld can cause high localised curvatures in excess of the reel curvature and in extreme cases buckling can occur. This paper examines the pipe behaviour during reeling when strength mismatches are present between adjacent pipes at a weld. It shows that the traditional, and currently used, method of calculating the minimum reelable wall thickness does not consider the maximum bending strain during the actual reeling process. The method does however consider a broadly equivalent process and it is shown that the simplified traditional approach is a credible criterion that provides a more than adequate margin to failure when combined with limited extra control of the specification of pipe purchased for reeling. The assessment procedure is outlined along with a description of the detailed Finite Element Analysis (FEA) modelling, full scale testing and field measurements performed to verify the method and results.
机译:最小可重胶壁厚的传统计算假设管道特性没有变化,并且曲率增加到卷轴上的最大值。当设计人员检查管道在卷轴期间不会扣时,设计人员通常检查峰值塑料时刻的曲率小于容器卷轴曲率。设计代码规定了适当的安全因子,以确保满足此要求,其中峰值塑料时刻发生的曲率是基于纯时刻负荷下的管道的测试。然而,已知在焊缝处相邻管道之间的不匹配可以导致超过卷轴曲率的高局部曲率,并且在极端情况下可能发生弯曲。当在焊缝处相邻管道之间存在强度不匹配时,本文检查了卷尺期间的管道行为。它表明,计算最小可重胶壁厚的传统和当前使用的方法不考虑实际卷轴过程中的最大弯曲应变。然而,该方法确实考虑了广泛的过程,并且表明简化的传统方法是可信标准,其在结合购买用于卷取的管道规格的有限额外控制时提供了一个足够的余量。概述了评估程序以及详细的有限元分析(FEA)建模,进行了全面测试和现场测量以验证方法和结果。

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