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Structural Integrity Assessment of Welded Pipeline Designed with Reduced Safety

机译:减少安全设计焊接管道的结构完整性评估

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The main goal of this paper was to assess the integrity of welded joints in the main pipeline of the reversible hydropower plant "Bajina Ba?ta". Japanese steel Sumiten 80P (SM 80P) was used as the parent material. European recommendation for pipeline safety factor is equal to 1.7 and this value was used for calculations of the RHPP "Bajina Ba?ta", whereas the value recommended by Japanese standards is 2.1. A relatively small safety factor, which is different from the Japanese recommendation (since the material itself is Japanese), represented one of the main reasons for a detailed investigation of the pipeline structural integrity and safety, using the prototype. In the case of pressure vessels, the welded joint is a location of stress concentration, which can act in the same way as residual stresses. Assessment of prototype test results is possible to perform based on stress and strain calculations of vessels with ideal geometry. For this reason, the solution for thin-walled vessels is given, both in elastic and elastic-plastic areas. Numerous tests were performed in order to obtain a reliability assessment necessary for the construction of the pipeline, since the consequences of potential failure would be disastrous in this case. A numerical simulation, based on the experimentally determined mechanical properties of the material used, was also performed in order to obtain the stress/strain distribution. These results were then compared to the experimentally obtained ones, and it was concluded that there is a good level of compliance between numerical and experimental results.
机译:本文的主要目标是评估可逆水电站“Bajina Ba?TA”的主要管道中焊接接头的完整性。日本钢Sumiten 80P(SM 80P)用作母材。欧洲管道安全系数等于1.7,该值用于计算RHPP“Bajina Ba?TA”,而日本标准推荐的价值是2.1。一种相对较小的安全系数,与日本建议不同(由于材料本身是日语),所以使用原型的详细调查管道结构完整性和安全性的主要原因之一。在压力容器的情况下,焊接接头是应力浓度的位置,其可以以与残余应力相同的方式。基于具有理想几何形状的容器的应力和应变计算,可以进行原型测试结果的评估。因此,给出了弹性和弹性塑料区域的薄壁容器的溶液。进行了许多测试,以获得建造管道所需的可靠性评估,因为在这种情况下潜在失败的后果将是灾难性的。还进行了数值模拟,基于所用材料的实验确定的材料的机械性能,以获得应力/应变分布。然后将这些结果与实验获得的结果进行比较,并且得出结论是数值和实验结果之间存在良好的依从性。

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