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COMPUTATION OF SOLID MELTING WITH WALL BOILING UNDER EXTERNAL REACTOR VESSEL COOLING

机译:外部反应釜冷却时壁沸腾的固溶计算

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The solid wall convection melting physics is computed with coupling external boiling physics based on the volume-of-fluid model in the STAR-CCM+ code. A three-dimensional rectangular computational sample domain is used with 5.0 cm height, 4.0 cm width and 1.0 cm depth. This domain is separated by carbon steel representing a reactor vessel section in contact with water channel representing the gap between the reactor vessel outer surface and the insulation. The flow rate of the bottom inlet flow in the water flow channel is 2 × 10~(-2) kg/sec with temperature at 92 °C. The concentrated heat flux of 2.1 MW/m2 obtained from a typical APR1400 reactor condition is imposed at the center of the left wall of the solid region. At the same time, subcooled water entering the right channel boils and the vapor film covers the surface which expedites melting process in the solid heated region. Important finding is that solid wall melt-through is not expected as far as for the present analysis conditions and there is a minimum water flow rate below which the rate of solid melting is saturated.
机译:基于STAR-CCM +代码中的流体体积模型,通过耦合外部沸腾物理学来计算固体壁对流熔化物理学。使用高度为5.0厘米,宽度为4.0厘米,深度为1.0厘米的三维矩形计算样本域。该区域由代表反应堆容器截面的碳钢与与代表反应堆容器外表面和隔热层之间的间隙的水通道接触而分开。温度为92°C时,水流通道中底部入口流的流量为2×10〜(-2)kg / sec。从典型的APR1400反应器条件获得的2.1 MW / m2的集中热通量施加在固体区域左壁的中心。同时,进入右通道的过冷水沸腾,汽化膜覆盖表面,这加快了固体加热区域的熔化过程。重要的发现是,就目前的分析条件而言,预计不会发生固体壁熔穿,并且存在最小水流速,在该最小水流速之下,固体熔解速率达到饱和。

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