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MICRO-POROUS COATINGS AND ENHANCED CHF FOR DOWNWARD FACING BOILING DURING PASSIVE EMERGENCY REACTOR COOLING

机译:被动应急反应器冷却过程中向下表面沸腾的微孔涂层和增强的CHF

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During a Reaction Initiated Accident (RIA) or Loss of Coolant Accident (LOCA), passive external-cooling of the reactor lower head is a viable approach for the in-vessel retention of Corium; while this concept can certainly be applied to new constructions, it may also be viable for operational systems with existing cavities below the reactor. However, a boiling crisis will inevitably develop on the reactor lower head owing to the occurrence of Critical Heat Flux or CHF that could reduce the decay heat removal capability as the vapor phase impedes continuous boiling. Fortunately, this effect can be minimized for both new and existing reactors through the use of a Cold-Spray delivered, micro-porous coating that facilitates the formation of vapor micro-jets from the reactor surface. The micro-porous coatings were created by first spraying a binary mixture with the sacrificial material then removed via etching. Subsequent quenching experiments on uncoated and coated hemispherical surfaces showed that local CHF values for the coated vessel were consistently higher relative to the bare surface. Moreover, it was observed for both coated and uncoated surfaces that the local rate of boiling and local CHF limit varied appreciably along the outer surface. Nevertheless, the results of this intriguing study clearly show that the use of Cold Spray coatings could enhance the local CHF limit for downward facing boiling by more than 88%. Moreover, the Cold-Spray process is amenable to coating the lower heads of operating reactors.
机译:在反应引发事故(RIA)或冷却剂事故(LOCA)发生期间,反应堆下缸盖的被动外部冷却是一种可行的方法,可以在容器内滞留Corium。虽然这个概念肯定可以应用于新的结构,但对于反应堆下方具有现有型腔的操作系统来说,也可能是可行的。然而,由于临界热通量或CHF的出现,沸腾危机将不可避免地在反应器下端发展,这可能会由于蒸气相阻碍连续沸腾而降低衰减排热能力。幸运的是,通过使用冷喷涂输送的微孔涂层,无论是新反应堆还是现有反应堆,都可以将这种影响最小化,该涂层有利于从反应堆表面形成蒸汽微喷射流。通过先用牺牲材料喷涂二元混合物,然后通过蚀刻将其制成,从而形成微孔涂层。随后在未涂覆和涂覆的半球形表面上进行的淬火实验表明,涂覆容器的局部CHF值相对于裸露表面始终较高。此外,对于涂覆和未涂覆的表面均观察到,局部沸腾速率和局部CHF极限沿外表面明显变化。但是,这项有趣的研究结果清楚地表明,使用Cold Spray涂层可以使朝下沸腾的局部CHF限制提高88%以上。而且,冷喷涂工艺适合于涂覆运行中的反应器的下缸盖。

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