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Application of probabilistic methods to validate NPP pipewhip impact simulations

机译:概率方法在验证NPP管鞭冲击模拟中的应用

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Piping in nuclear power plants is vital to the proper operation and safety of these facilities. To assure safety in the unlikely event of a pipe break, it is necessary to evaluate the consequences from the resulting whipping pipe on neighboring components and structures. Numerical simulations allow for rapid evaluation of these consequences. Before simulations can be accepted, however, the methodology and computer codes must be validated against experimental results. This paper uses a probabilistic approach to validate pipe whip simulations against limited experimental results. Probabilistic analysis software was developed and coupled to existing deterministic finite element software. An example of a whipping pipe impacting against a reinforced concrete slab was simulated. The described probabilistic approach was used to validate the numerical simulations. The conclusions obtained were that the numerical simulations of whipping pipe impact were validated, even though the numerical results did not exactly agree with experimental results. The chosen points of comparison - namely, time-to-impact and total reaction force - were within the 95% confidence interval.
机译:核电厂的管道对于这些设施的正常运行和安全至关重要。为了确保在万一发生管道破裂的情况下的安全性,有必要评估由此产生的搅打管道对相邻组件和结构造成的后果。数值模拟可以快速评估这些后果。但是,在接受模拟之前,必须根据实验结果验证方法和计算机代码。本文使用概率方法针对有限的实验结果验证了管道鞭仿真。开发了概率分析软件,并将其与现有的确定性有限元软件耦合。模拟了一个搅打管撞击钢筋混凝土板的例子。所描述的概率方法用于验证数值模拟。得出的结论是搅打管冲击的数值模拟得到了验证,尽管数值结果与实验结果并不完全吻合。选择的比较点-达到作用的时间和总反作用力-在95%置信区间内。

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