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Verification of the interrelation between local wall thinning and velocity components observed in the deflected turbulent flow inside orifice of carbon steel piping

机译:验证在碳钢管道孔内偏转的湍流中观察到的局部壁变薄与速度分量之间的相互关系

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摘要

When components made of carbon steel in nuclear, fossil, and industry plants are exposed to flowing fluid, wall thinning caused by flow accelerated corrosion (FAC) can be generated and eventually ruptured at the portion of pressure boundary. A study to identify the locations generating local wall thinning and to disclose turbulence coefficients related to the local wall thinning was performed. Experiments and numerical analyses for orifice of downscaled piping components were performed and the results were compared. Based on the results that the flow behaviors inside piping components can be simulated by numerical analysis, numerical analyses for magnified models to actual size of plants were performed. To disclose the relationship between turbulence coefficients and local thinning rate, numerical analyses were preformed for orifice components included in the main feedwater systems. The turbulence coefficients based on the numerical analyses were compared with the local wear rate based on the measured data. From the comparison of the results, the vertical flow velocity component (Vr) flowing to the wall after separating in the wall due to the geometrical configuration and colliding with the wall directly at an angle of some degree was analogous to the configuration of local wall thinning.
机译:当核工厂,化工厂和工业工厂中的碳钢制成的部件暴露于流动的流体中时,会产生由流动加速腐蚀(FAC)引起的壁变薄,并最终在压力边界部分破裂。进行了一项研究,以确定产生局部壁变薄的位置,并揭示与局部壁变薄相关的湍流系数。对缩小规模的管道组件的孔口进行了实验和数值分析,并对结果进行了比较。基于可以通过数值分析来模拟管道部件内部流动行为的结果,对放大模型进行了数值分析,以达到工厂的实际规模。为了揭示湍流系数与局部稀化率之间的关系,对主要给水系统中包括的孔口组件进行了数值分析。将基于数值分析的湍流系数与基于实测数据的局部磨损率进行比较。从结果的比较来看,由于几何构型在壁中分离并以一定角度直接与壁碰撞后流入壁的垂直流速分量(Vr)类似于局部壁变薄的构型。

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