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NUMERICAL VALIDATION OF AQUA-SF IN SNL T3 SODIUM SPRAY FIRE EXPERIMENT

机译:SNL T3钠喷雾试验中AQUA-SF的数值验证

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In order to investigate the effect of sodium combustion. Sandia National Laboratories (SNL) and Japan Atomic Energy Agency (JAEA) have exchanged information of sodium combustion modeling and related experimental data in the framework of Civil Nuclear Energy Research and Development Working Group (CNWG). This collaboration includes a benchmark analysis of the SNL Surtsey spray combustion experiment (SNL T3 experiments) using AQUA-SF and SPHINCS in JAEA. In this paper, investigation into multidimensional effect and best estimate for T3 experiment with AQUA-SF are conducted as validation and verification of the code. A spray combustion is characterized by formation of sodium droplet cloud due to pressure difference and their spreading with combustion. Therefore, the combustion phenomenon will be much affected by spatial distributions of parameters such as gas temperature, gas velocity and oxygen concentration. As a best estimate analysis, the spray burning duration is adjusted in the computation in order to take into account the temporary suppression of the spray combustion observed in the experiment. Furthermore, droplet size of SPHINCS and AQUA-SF are optimized to represent the T3 experimental results. For the best estimate in AQUA-SF, sodium droplet size needs to be set larger than SPHINCS in order to decrease the surface area and suppress the spray burning rate. These adjustment leads to more precise representation of the measurements in T3 experiment.
机译:为了研究燃烧钠的作用。桑迪亚国家实验室(SNL)和日本原子能机构(JAEA)已经交换钠燃烧模型的信息,并在民用核能源的研究和开发工作组(CNWG)框架相关的实验数据。这种协作包括使用AQUA-SF和SPHINCS在JAEA的SNL叙尔特塞岛喷雾燃烧实验(SNL T3实验)的基准分析。在本文中,调查多维效果和T3实验AQUA-SF最佳估计被作为代码的确认和验证进行。喷雾燃烧的特征是形成液滴钠云由于压力差以及它们与燃烧蔓延。因此,燃烧现象将大大通过的参数,如气体温度,气体速度和氧的浓度的空间分布的影响。作为一个最佳估计分析,喷雾燃烧持续时间,以考虑到在实验中观察到的喷雾燃烧的暂时抑制调节在计算。此外,SPHINCS和AQUA-SF的液滴尺寸被优化来表示T3的实验结果。在AQUA-SF的最佳估计,钠液滴尺寸需要以减小表面积并抑制喷雾燃烧速度设定得比SPHINCS大。这些调整,因而在T3实验测量的更精确的表示。

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