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Influence of gas pressure on the effective thermal conductivity of ceramic breeder pebble beds

机译:气压对陶瓷种卵石床有效导热系数的影响

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摘要

Lithium ceramics have been considered as tritium breeder materials in many proposed designs of fusion breeding blankets. Heat generated in breeder pebble beds due to nuclear breeding reaction must be removed by means of actively cooled plates while generated tritiums is recovered by purge gas slowly flowing through beds. Therefore, the effective thermal conductivity of pebble beds that is one of the governing parameters determining heat transport phenomenon needs to be addressed with respect to mechanical status of beds and purge gas pressure. In this study, a numerical framework combining finite element simulation and a semi-empirical correlation of gas gap conduction is proposed to predict the effective thermal conductivity. The purge gas pressure is found to vary the effective thermal conductivity, in particular with the presence of various sized gaps in pebble beds. Random packing of pebble beds is taken into account by an approximated correlation considering the packing factor and coordination number of pebble beds. The model prediction is compared with experimental observation from different sources showing a quantitative agreement with the measurement. (C) 2017 Elsevier B.V. All rights reserved.
机译:在许多建议的融合育种毯设计中,锂陶瓷已被视为as育种材料。由于核繁殖反应而在种卵石床中产生的热量必须通过主动冷却的板来消除,而生成的slowly则需要通过缓慢流过这些床的吹扫气体来回收。因此,卵石床的有效导热系数是决定传热现象的主要控制参数之一,需要根据床的机械状态和吹扫气体压力来解决。在这项研究中,提出了一种将有限元模拟与气隙传导的半经验相关性相结合的数值框架,以预测有效的热导率。发现吹扫气体压力会改变有效的热导率,特别是在卵石床中存在各种尺寸的间隙的情况下。卵石床的随机堆积是通过考虑卵石床的堆积因子和配位数的近似相关性来考虑的。将模型预测与来自不同来源的实验观察结果进行比较,显示与测量结果之间存在定量一致性。 (C)2017 Elsevier B.V.保留所有权利。

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