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Model for determining the effective thermal conductivity of particle beds with high solid-to-gas thermal conductivity ratio

机译:高固热比的颗粒床有效导热系数测定模型

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A Be-packed bed between the high-temperature breeder and low-temperature coolant has been proposed for an ITER solid breeder base blanket. The design offers the possibility of adjusting the solid breeder temperature through active control of the packed-bed effective conductivity; such control can potentially be achieved by varying the pressure or flow rate of the helium purge flowing through the Be-packed bed. A modeling effort directed at estimating the effective thermal conductivity of pebble beds with high solid-to-gas conductivity ratios (such as Be and He) is described. The model can account for different particle sizes and surface contact characteristics which are particularly important in determining the extent to which the bed effective thermal conductivity can be controlled through pressure variation for high ratios of solid-to-gas conductivity.
机译:有人建议在ITER固态育种机基础毯子上的高温育种人和低温冷却剂之间使用Be-packed床。该设计提供了通过主动控制填充床有效电导率来调节固体育种机温度的可能性。通过控制流经Be-packed床的氦气吹扫的压力或流速可以潜在地实现这种控制。描述了一种建模工作,旨在估算具有高固气比(例如Be和He)的卵石床的有效导热率。该模型可以考虑不同的粒径和表面接触特性,这对于确定固-气电导率高的压力变化可通过压力变化控制床有效导热率的程度尤为重要。

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