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Design and research on the measurement platform of the effective thermal conductivity for Li4SiO4 and Li2TiO3 pebble bed

机译:Li4SiO4和Li2TiO3卵石床有效导热系数测量平台的设计与研究

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摘要

China is carrying out the conceptual design of Chinese Fusion Engineering Testing Reactor (CFETR), and the Helium Cooled Pebble Bed (HCPB) blanket concept is one of the main choices for tritium production. Li4SiO4 and Li2TiO3 are the candidate breeder materials for the HCPB blanket concept. In the HCPB blanket, breeding pebbles with the diameter range of 0.6-1.2 mm are placed between two plates and the bed shall be cooled. Accordingly, effective thermal conductivity of pebble beds needs to be determined for the heat transfer calculation. Measurements of the heat transfer parameters of Li4SiO4 and Li2TiO3 pebble beds are being performed at the University of Science and Technology of China (USTC). Two measurement methods are being used. One is the steady state method with the use of thermocouples to measure the temperature distribution of the pebble bed. Another is transient thermal probe method using the temperature variation of the thermal probe and Monte Carlo inversion method to calculate the heat transfer parameters of the pebble bed. This paper will report on the progress of these measurement platforms. (C) 2015 Elsevier B.V. All rights reserved.
机译:中国正在执行中国聚变工程测试反应堆(CFETR)的概念设计,氦冷卵石床(HCPB)毯子概念是tri生产的主要选择之一。 Li4SiO4和Li2TiO3是HCPB覆盖层概念的候选育种材料。在HCPB毯中,将直径范围为0.6-1.2 mm的繁殖卵石放在两块板之间,并冷却床。因此,为了传热计算,需要确定卵石床的有效导热率。中国科学技术大学(USTC)正在对Li4SiO4和Li2TiO3卵石床的传热参数进行测量。正在使用两种测量方法。一种是使用热电偶来测量卵石床温度分布的稳态方法。另一个是使用热探针的温度变化的瞬态热探针法和蒙特卡洛反演方法来计算卵石床的传热参数。本文将报告这些测量平台的进展。 (C)2015 Elsevier B.V.保留所有权利。

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