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Influence of bed conditions on the effective thermal conductivity of ceramic breeder pebble beds using thermal DEM (TDEM)

机译:床条件对陶瓷饲养卵石床的有效导热率的影响使用热敏(TDEM)

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摘要

The knowledge of effective thermal conductivity (ETC) of the pebble beds is vital in designing the breeder units for fusion reactors. The ETC of pebble beds in general depends on various parameters characterizing the bulk material and microstructural properties. Establishing correlations between the ETC and the governing system parameters through experiments is very expensive and not feasible in some cases as the particle scale data is not readily available. Hence, Thermal Discrete Element Method (TDEM) is employed in this paper to investigate the influence of various parameters on the effective thermal conductivity of pebble beds. Influence of parameters such as packing fraction, stress, bed temperature, pebble size and stagnant gas pressure on the ETC is investigated for lithium ceramic pebble beds in stagnant Helium/Air. Further, the variation of the ETC from the wall region to the bulk for pebble beds formed in prismatic containers is presented. Subsequently, dual phase pebble beds have been investigated to identify configurations that will enhance the ETC of the bed.
机译:卵石床的有效导热系数(ETC)的知识对于设计用于融合反应器的种植单位至关重要。卵石床等的等一般取决于表征散装材料和微观结构性质的各种参数。通过实验建立ETC和管理系统参数之间的相关性非常昂贵,因为在某些情况下,由于粒子尺度数据不容易获得,因此在某些情况下不可行。因此,本文采用了热分立元件方法(TDEM)以研究各种参数对卵石床的有效导热率的影响。在停滞氦/空气中的锂陶瓷卵石床上研究了诸如填充级分,应力,床温,卵石尺寸和停滞气体压力的参数的影响。此外,呈现了从墙区域到形成在棱镜容器中的卵石床的块状物的壁区域的变化。随后,已经研究了双相卵石床以识别将增强床等的配置。

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