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An experimental study of the coolability of debris beds with geometry variations

机译:具有几何形状变化的碎屑床可冷却性的实验研究

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The coolability of porous debris beds consisting of a simulant of solidified corium was investigated in an experimental study. The focus was on the effects of the geometrical shape of the debris bed and multidimensional flooding on the dryout heat flux. Dryout heat flux (DHF) was measured for six variations of the debris bed geometry, one of which was a classical, top-flooded cylinder and five that had more complex geometries. The complex geometries included conical and heap-shaped beds which can be considered prototypic to reactor scenarios. It was found that the multi-dimensional flooding related to heap like geometries increases the DHF compared to top flooding by 47-73%. It was emphasized that the debris bed height has to be taken into account when assessing the coolability of realistic geometries: the heap like geometry increases the dryout heat flux by facilitating multi-dimensional infiltration of water into the bed, but it also decreases the dryout power by having a greater height. The measured DHF increase represents a limit for the debris bed height, because if the increase in bed height is greater than the DHF increase, the direct benefit from the multi-dimensional flooding is lost. In addition, post-dryout conditions and their significance in the overall coolability of multi-dimensionally flooded beds were discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在实验研究中研究了由凝固的皮质模拟物组成的多孔碎片床的可冷却性。重点是碎屑床的几何形状和多维溢流对干透热通量的影响。测量了碎屑床几何形状的六种变化的干透热通量(DHF),其中一种是经典的顶部浸入式圆柱体,另外五种具有更复杂的几何形状。复杂的几何形状包括圆锥形床和堆状床,这些床可以视为反应堆方案的原型。已发现,与堆状几何形状相关的多维洪水将DHF与顶部洪水相比增加了47-73%。需要强调的是,在评估实际几何形状的可冷却性时必须考虑碎屑床的高度:类似堆的几何形状通过促进水向水床中的多维渗透而增加了干燥热通量,但同时也降低了干燥力。通过具有更高的高度。测得的DHF增量代表了碎屑床高度的极限,因为如果床高度的增加大于DHF的增加,则将失去多维驱替的直接好处。此外,还讨论了干燥后的条件及其在多维淹没床整体可冷却性中的意义。 (C)2016 Elsevier Ltd.保留所有权利。

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