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Two- and three-dimensional experiments for oxide pool in in-vessel retention of core melts

机译:熔体在容器内保留中氧化物池的二维和三维实验

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To investigate the heat loads imposed on a reactor vessel through the natural convection of core melts in severe accidents, mass transfer experiments were performed based on the heat transfer/mass transfer analogy, using two- (2-D) and three-dimensional (3-D) facilities of various heights. The modified Rayleigh numbers ranged from 10 12 to 10 15 , with a fixed Prandtl number of 2,014. The measured Nusselt numbers showed a trend similar to those of existing studies, but the absolute values showed discrepancies owing to the high Prandtl number of this system. The measured angle-dependent Nusselt numbers were analyzed for 2-D and 3-D geometries, and a multiplier was developed that enables the extrapolation of 2-D data into 3-D data. The definition of R a H ′ was specified for 2-D geometries, so that results could be extrapolated for 3-D geometries; also, heat transfer correlations were developed.
机译:为了研究在严重事故中通过堆芯熔体的自然对流施加在反应堆容器上的热负荷,基于传热/传质的类比,使用二维(2-D)和三维(3 -D)各种高度的设施。修改后的瑞利数在10 12到10 15之间,固定的Prandtl数为2014。测得的Nusselt数显示出与现有研究相似的趋势,但由于该系统的高Prandtl数,绝对值显示出差异。针对2D和3D几何图形分析了与角度相关的Nusselt数,并开发了一个乘法器,可以将2D数据外推到3D数据中。 R a H′的定义是针对2-D几何形状的,因此可以将结果外推至3-D几何形状。同样,传热相关性也得到了发展。

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