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首页> 外文期刊>Annals of Nuclear Energy >Uncertainty Analysis of Leak Rate Calculation through Pipes and Slits
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Uncertainty Analysis of Leak Rate Calculation through Pipes and Slits

机译:管道和缝隙泄漏率计算的不确定性分析

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Results of a numerical investigation of the two-phase critical flows of initially subcooled or saturated water through pipes and slits are reported. The study of such flows is relevant to the prediction of leak rates through cracks or breaks in high energy piping systems. Calculation results are compared to the reported experimental data. Effects of flow parameters such as the subcooling temperature, stagnation pressure, flashing inception and friction on the critical mass flow rate are stressed. Results showed that a reasonably good agreement between the predicted values and the measured data was found in pipe flows, but the model underpredicts the experimental data for the arti- ficial slits for higher subcooling temperature in most cases. The agreement was improved when the location of the flashing inception was set at the actual location provided by the experiment. It was also found that the influence of the friction coefficients on the critical mass flux was significant and thus appropriate choice or estimation of the friction factor correlation and the surface roughness would be of great importance for the accurate prediction of two-phase critical flows.
机译:报告了最初过冷或饱和水通过管道和缝隙的两相临界流的数值研究结果。对这种流动的研究与通过高能管道系统中的裂缝或断裂引起的泄漏率的预测有关。将计算结果与报告的实验数据进行比较。强调了过冷温度,停滞压力,闪蒸开始和摩擦等流量参数对临界质量流量的影响。结果表明,在管道流量中可以找到预测值和实测数据之间的合理良好一致性,但是在大多数情况下,该模型对人工缝隙的实验数据预测不足,从而提高了过冷温度。将闪烁开始的位置设置为实验提供的实际位置时,协议会得到改善。还发现,摩擦系数对临界质量通量的影响是显着的,因此,正确选择或估计摩擦系数的相关性和表面粗糙度对于准确预测两相临界流将非常重要。

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