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NUMERICAL SIMULATION OF STEAM GENERATOR TUBE RUPTURE SEQUENCE IN ADS REACTOR

机译:ADS反应器中蒸汽发生器管破裂序列的数值模拟

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In ADS reactor which choose LBE (Lead-Bismuth Eutectic) as coolant and spallation target. While SGTR (Steam Generator Tube Rupture) accident occur, water in secondary side will inject to LBE in primary coolant, and flow with LBE. The code of FLUENT will be used, steam is looked as particle, and standard k-ε model is used to predict turbulence variation of continuous phase in core. The DPM (Discrete Phase Model) will be used to track the trajectory of the particles. The distribution of steam in core will be obtained, which will verify the safety of reactor. The results show that the steam flowing across the core with LBE, might accumulate in some position and cause a surge of power. At the same time, the aggregation of steam at the channel might lead to a steam plug, and hinder the flow of the coolant in core, then core overheating might occur. Last but not least, local accumulation of water vapor may accelerate the corrosion of stainless steel material in core.
机译:在ADS反应堆中,选择LBE(铅-铋共晶)作为冷却剂和剥落目标。发生SGTR(蒸汽发生器管破裂)事故时,二次侧的水将注入一次冷却剂中的LBE中,并随LBE一起流动。将使用FLUENT的代码,将蒸汽视为颗粒,并使用标准的k-ε模型来预测堆芯中连续相的湍流变化。 DPM(离散相模型)将用于跟踪粒子的轨迹。将获得堆芯中蒸汽的分布,这将验证反应堆的安全性。结果表明,带有LBE的流经堆芯的蒸汽可能会聚集在某个位置并引起电涌。同时,通道处的蒸汽聚集可能会导致蒸汽堵塞,并阻碍冷却剂在堆芯中的流动,然后可能发生堆芯过热。最后但并非最不重要的一点是,水蒸气的局部积累可能会加速铁心中不锈钢材料的腐蚀。

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