首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigations of droplet carryover from the separator drum of an air-lift loop simulating a scaled-down AHWR
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Experimental investigations of droplet carryover from the separator drum of an air-lift loop simulating a scaled-down AHWR

机译:气提回路分离鼓中液滴残留物的实验研究,模拟了按比例缩小的AHWR

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摘要

Entrainment of phases into each other in a two-phase Natural Circulation Loop is of critical concern in nuclear applications. Despite having serious consequences, such as, radioactivity contamination, hardly any focused study of droplet entrainment from the separator drum has been reported. Hence, a comprehensive experimental study has been performed on an air-lift loop, considering an Advanced Heavy Water Reactor (AHWR) as the prototype. Loop dimensions were obtained following a detailed scaling analysis incorporating natural circulation modelling methodology and entrainment analysis inside the drum. Carryover was observed to increase with air supply rate and generally with drum water level. Porous suppressor plates were employed to reduce droplet entrainment and approximately 94% carryover reduction was achieved for the highest air flow rate employed. Parametric studies characterized the suppressor plates well; carryover rate reduced with reduction in diameter and number of holes in the suppressor plates.
机译:在核应用中,两相自然循环回路中各相之间的夹带是至关重要的。尽管有严重的后果,例如放射性污染,但几乎没有集中研究从分离鼓中夹带液滴的报道。因此,以先进的重水反应堆(AHWR)为原型,对气举回路进行了全面的实验研究。循环尺寸是在详细的比例分析之后得出的,该分析结合了自然循环建模方法和滚筒内部的夹带分析。观察到夹带随空气供应速率增加,通常随鼓水位增加。采用多孔的抑制板来减少液滴的夹带,对于所采用的最高空气流速,可实现约94%的残留减少。参数研究很好地描述了抑制器板。随着抑制板直径和孔数量的减少,残留率降低。

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