4.5 Article

Single-phase convection heat transfer characteristics of pebble-bed channels with internal heat generation

Journal

NUCLEAR ENGINEERING AND DESIGN
Volume 252, Issue -, Pages 121-127

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.nucengdes.2012.05.041

Keywords

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Funding

  1. National Natural Science Foundation of China

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The reactor core of a water-cooled pebble bed reactor includes porous channels that are formed by spherical fuel elements. This structure has notably improved heat transfer. Due to the variability and randomness of the interstices in pebble bed channels, heat transfer is complex, and there are few studies regarding this topic. To study the heat transfer characters of pebble bed channels with internal heat sources, oxidized stainless steel spheres with diameters of 3 and 8 mm and carbon steel spheres with 8 mm diameters are used in a stacked pebble bed. Distilled water is used as a refrigerant for the experiments, and the electromagnetic induction heating method is used to heat the pebble bed. By comparing and analyzing the experimental results, we obtain the governing rules for the power distribution and the heat transfer coefficient with respect to particle diameter, heat flux density, inlet temperature and working fluid Re number. From fitting of the experimental data, we obtain the dimensionless average heat transfer coefficient correlation criteria and find that the deviation between the fitted results and the experimental results is 12% or less. (C) 2012 Elsevier B.V. All rights reserved.

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