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Experimental investigation of effective thermal conductivity of packed lithium-titanate pebble bed with external heat source and flow of helium

机译:带外部热源和氦气流动的填充钛酸锂卵石床有效导热系数的实验研究

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摘要

Packed pebble bed of ceramic solid breeder materials viz. lithium titanate or meta-titanate (Li2TiO3), lithium orthosilicate (Li4SiO4) etc. is being considered for fusion blankets. During the breeding of tritium, helium will be produced and also it is proposed to flow helium from outside through the bed to extract tritium, as well as to remove thermal energy from the bed. Experimental determination of thermal property data of the pebble bed under helium gas flow is important for the blanket design. Such study of determination of effective thermal conductivity with flowing helium condition was not performed previously. Though, it is known that with an increase in gas flow rate, the effective thermal conductivity of pebble bed increases, it is necessary to conduct experiments to know the exact values and the degree of variation. Model and experimental setup used in our previous study was used to for this present work. Effects of process parameters viz., helium gas flow rate, bed temperature, pebble size etc. on the effective thermal conductivity of the bed have been studied. Correlations have been developed from these experimental data to estimate effective thermal conductivity at different particle Reynold's number and bed temperature. It was found that with the use of helium, the effective thermal conductivity of bed increases by many folds. Experimental details and results are discussed in this paper. (C) 2016 Elsevier B.V. All rights reserved.
机译:陶瓷固体育种材料的填充卵石床,即。考虑将钛酸锂或偏钛酸锂(Li2TiO3),原硅酸锂(Li4SiO4)等用于熔合毯。在the的繁殖过程中,将产生氦气,并建议使氦气从外部流过床,以提取extract,并从床中去除热能。氦气流下卵石床热特性数据的实验确定对于毯子设计很重要。以前没有进行过这种在流动氦气条件下确定有效导热系数的研究。但是,众所周知,随着气体流量的增加,卵石床的有效热导率会增加,但有必要进行实验以了解确切值和变化程度。在我们之前的研究中使用的模型和实验设置用于当前的工作。研究了工艺参数即氦气流量,床温,卵石尺寸等对床有效导热率的影响。从这些实验数据得出了相关性,以估计不同雷诺数和床温下的有效导热系数。发现使用氦气,床的有效热导率增加了许多倍。实验细节和结果在本文中进行了讨论。 (C)2016 Elsevier B.V.保留所有权利。

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