首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >NUMERICAL ANALYSIS OF NATURAL CONVECTION INDUCED OXYGEN TRANSPORT IN LIQUID LEAD BISMUTH EUTECTIC
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NUMERICAL ANALYSIS OF NATURAL CONVECTION INDUCED OXYGEN TRANSPORT IN LIQUID LEAD BISMUTH EUTECTIC

机译:液体铅铋中自然对流诱导氧气输送的数值分析

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Liquid lead bismuth eutectic (LBE) is very corrosive to steels. To mitigate structural corrosion of LBE systems, active oxygen control technique is developed. To enhance the speed of oxygen transport in liquid LBE, natural convection has been proposed. This paper numerically analyzes the oxygen transport in a natural convection induced LBE enclosure. Different temperature boundary conditions are added to the container. Both laminar and turbulent LBE flows which are distinguished by strength of flow measured are analyzed. Three laminar cases: (a) heated from the bottom and cooled from the top of the container; (b) heated from the sidewalls and cooled from the top of the container; (c) one sidewall heated and the opposite wall cooled, and one fully turbulent case with one sidewall heated and the opposite sidewall cooled are chosen. Oxidization in near wall areas and formation of oxide layers on container surfaces are considered. In each case, the characteristic velocity and oxygen diffusion time are estimated, the change of oxygen distribution with time are obtained, and the bulk concentration of oxygen and the efficiency of oxide layer formation on different liquid-solid interfaces are calculated. To obtain more information of oxygen transportation and distribution, three-dimension analysis of the laminar flow is done. Based on the analysis, several conclusions are finally obtained.
机译:液体铅铋共晶(LBE)对钢非常腐蚀。为了减轻LBE系统的结构腐蚀,开发了主动氧气控制技术。为了提高液体LBE中的氧气运输速度,已经提出了自然对流。本文在数值上分析了自然对流引起的LBE外壳中的氧气运输。将不同的温度边界条件添加到容器中。分析了通过测量的流量强度而区分的层状和湍流LBE流。三个层状例:(a)从底部加热并从容器顶部冷却; (b)从侧壁加热并从容器的顶部冷却; (c)选择一个加热的侧壁和相对的壁冷却,并选择具有一个侧壁加热的一个完全湍流的壳体和冷却的相对的侧壁冷却。考虑了近壁区域的氧化和容器表面上的氧化物层的形成。在每种情况下,估计特征速度和氧扩散时间,获得了氧气分布的变化,并计算氧的大量浓度和氧化物层形成在不同的液体固体界面上。为了获得更多信息的氧气运输和分布,完成了层流的三维分析。基于分析,最终获得了几个结论。

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