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首页> 外文期刊>International Journal of Offshore and Polar Engineers >A Numerical Study of Hydrogen Diffusion in a Part-size Sleeve-on-Pipe Mock-up Exposed to Two Different Levels of Post Weld Heat Treatment
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A Numerical Study of Hydrogen Diffusion in a Part-size Sleeve-on-Pipe Mock-up Exposed to Two Different Levels of Post Weld Heat Treatment

机译:在两个不同水平的焊后热处理下,零件尺寸的管套样机中氢扩散的数值研究

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摘要

Deeper waters impose considerable challenges for eventual remote pipeline repair and remote hot-tapping. The purposes of this study were (1) to replicate the thermal history of a laboratory-produced part-size sleeve-on-pipe mock-up, which was designed to replicate the geometry and highest restraint levels of a remote pipeline repair scenario that was exposed to pre- and post-heating; and (2) to examine the decay of hydrogen in and adjacent to a test weld, which closed the gap between the sleeve and the pipe. Measured temperatures and Δt_(8/5) weld metal cooling rates were reproduced satisfactorily by the computer model. Two test cases were selected for modeling. One created a crack-free weld, while the other did not. The main difference was the pre- and post-weld heating temperature. Two approaches for the modeling of hydrogen diffusion were applied, one based on an apparent diffusion coefficient and another based on the calculation of trapping. With respect to the incidence of cracking and the level of hydrogen obtained after the post-weld heating period, both approaches for the modeling of hydrogen diffusion support the experimental findings.
机译:更深的水域给最终的远程管道维修和远程热攻带来了巨大的挑战。这项研究的目的是(1)复制实验室生产的零件尺寸的套管式实体模型的热历史记录,该模型旨在复制远程管道维修场景中的几何形状和最高约束水平。暴露于加热前后(2)检查氢在试焊缝中及附近的腐蚀,该焊缝闭合了套管和管子之间的间隙。通过计算机模型令人满意地再现了测得的温度和Δt_(8/5)焊缝金属冷却速率。选择了两个测试用例进行建模。一个创造了无裂纹的焊缝,而另一个则没有。主要区别是焊前和焊后加热温度。氢扩散的建模有两种方法,一种基于表观扩散系数,另一种基于捕集计算。关于裂纹发生率和焊后加热阶段后获得的氢含量,两种用于氢扩散建模的方法都支持实验结果。

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