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Enhancement of oxygen transfer in liquid lead and lead-bismuth eutectic by natural convection

机译:自然对流促进液态铅和铅铋共晶中氧的转移

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The present study carries out numerical analysis of the coupled natural convection and oxygen transfer of low-Pra-ndtl-number (~0.02) liquid lead and lead-bismuth eutectic (LBE) for testing and calibrating low concentration level oxygen sensors. The analysis is performed on the two-dimensional coordinates in a rectangular container, where the fluid movement is laminar for the purpose of sensor test and calibration. The oxygen supply is from the cover gas at the top of the container. Natural convection and oxygen transfer are examined under three temperature boundary conditions: (a) heated from the lower part and cooled from the upper part of the sidewalls of the container; (b) heated from the sidewalls and cooled from the top of the container; (c) one sidewall heated and the opposing wall cooled. It is found that there are four, two and one convective circulation cells under conditions (a), (b), and (c), respectively. All these flows induced by the natural convection greatly enhance the oxygen transfer in the liquid metal. The most efficient one is under condition (b), in which it takes about 1000 s for the oxygen concentration in the whole field to reach ~90% of the input oxygen concentration from the top, instead of ~10~6 s by the pure diffusion.
机译:本研究对低Pra-ndtl数(〜0.02)的液态铅和铅铋共晶(LBE)的自然对流和氧转移耦合进行数值分析,以测试和校准低浓度水平的氧传感器。分析是在矩形容器中的二维坐标上进行的,其中流体运动是层流的,目的是进行传感器测试和校准。氧气供应来自容器顶部的覆盖气体。在三种温度边界条件下检查自然对流和氧气的传递:(a)从容器侧壁的下部加热,从容器侧壁的上部冷却; (b)从容器的侧壁加热并从容器的顶部冷却; (c)一个侧壁被加热而相对的壁被冷却。发现在条件(a),(b)和(c)下分别有四个,两个和一个对流循环池。自然对流引起的所有这些流动大大增强了液态金属中的氧转移。最有效的条件是在条件(b)下,在整个条件下,整个场中的氧气浓度大约需要1000 s才能从顶部达到输入氧气浓度的〜90%,而不是单纯的约10〜6 s。扩散。

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