首页> 外文会议>International conference on nuclear engineering >DEVELOPMENT OF NUMERICAL SIMULATION METHOD TO EVALUATE HEAT TRANSFER PERFORMANCE OF AIR AROUND FUEL DEBRIS (1) EFFECT OF THE DEBRIS SHAPE
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DEVELOPMENT OF NUMERICAL SIMULATION METHOD TO EVALUATE HEAT TRANSFER PERFORMANCE OF AIR AROUND FUEL DEBRIS (1) EFFECT OF THE DEBRIS SHAPE

机译:评价空气燃料碎片周围传热性能的数值模拟方法的发展(1)碎片形状的影响

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Fuel debris retrieval in atmospheric conditions is proposed as one candidate in the Fukushima Daiichi NPS since it can suppress generation of the contaminated water. However, there are unknowns and uncertainties to evaluate the air cooling performance of the fuel debris. Solving the problems, we have been developing the air-cooling analysis method for accumulated debris in the pedestal. A numerical simulation code JUPITER, which is based on a CFD technics and treats a multi-phase, multi-component thermal-hydraulics, is used as the basis of the method. We preliminary evaluated the effect of debris shapes and heat source conditions on free convection and heat transfer in the simplified structure of the pedestal region using the JUPITER. As a result, it was confirmed that the flow pattern of the free convection in the pedestal clearly differs with debris shapes and a correlation exists between the temperature distribution and the velocity fluctuation around the debris surface.
机译:在福岛第一核电站中,建议在大气条件下回收燃料碎片,因为它可以抑制污染水的产生。但是,评估燃料碎片的空气冷却性能存在未知和不确定性。为了解决这些问题,我们一直在开发针对基座中堆积的碎屑的空气冷却分析方法。该方法的基础是基于CFD技术并处理多相,多组分热工液压的数值模拟代码JUPITER。我们使用JUPITER初步评估了碎片形状和热源条件对基座区域简化结构中自由对流和传热的影响。结果,证实了基座中的自由对流的流动模式随碎片形状而明显不同,并且温度分布与碎片表面周围的速度波动之间存在相关性。

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