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ENHANCEMENT OF DRYOUT HEAT FLUX IN A DEBRIS BED BY FORCED COOLANT FLOW FROM BELOW

机译:下流强迫冷却剂流增强碎石床中的干燥热通量

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摘要

In the design of advanced light water reactors (ALWRs) and in the safety assessment of currently operating nuclear power plants, it is necessary to evaluate the possibility of experiencing a degraded core accident and to develop innovative safety technologies in order to assure long-term debris cooling. The objective of this experimental study is to investigate the enhancement factors of dryout heat flux in debris beds by coolant injection from below. The experimental facility consists mainly of an induction heater, a double-wall quartz-tube test section containing a steel-particle bed and coolant injection and recovery condensing loop. A fairly uniform heating of the particle bed was achieved in the radial direction and the axial variation was within 20%. This paper reports the experimental data for 3.2 mm and 4.8 mm particle beds with a 300 mm bed height. The dryout heat density data were obtained for both the top-flooding and the forced coolant injection from below with an injection mass flux of up to 1.5 kg/m2s. The dryout heat density increased as the rate of coolant injection increased. At a coolant injection mass flux of 1.0 kg/m2s, the dryout heat density was ~6.5 MW/m3 for the 4.8 mm particle bed and ~5.6 MW/m3 for the 3.2 mm particle bed. The enhancement factors of the dryout heat density were 1.6-1.8.
机译:在设计先进的轻水反应堆(ALWR)以及对当前运行中的核电厂进行安全评估时,有必要评估发生核降解事故的可能性并开发创新的安全技术,以确保长期存在碎片冷却。本实验研究的目的是研究通过从下方注入冷却剂来提高碎屑床中变干热通量的因素。实验设备主要包括一个感应加热器,一个双层壁石英管测试区,其中包含一个钢质颗粒床以及冷却剂注入和回收冷凝回路。在径向方向上实现了颗粒床的相当均匀的加热,并且轴向变化在20%以内。本文报道了床高为300 mm的3.2 mm和4.8 mm颗粒床的实验数据。从顶部注入和强制性冷却剂注入均从下方以最高1.5 kg / m2s的注入质量通量获得干燥热密度数据。干燥剂的热密度随着冷却剂喷射速率的增加而增加。在1.0 kg / m2s的冷却剂注入质量通量下,4.8 mm颗粒床的干燥热密度为〜6.5 MW / m3,而3.2 mm颗粒床的干燥热密度为〜5.6 MW / m3。变干热密度的增强因子为1.6-1.8。

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