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CFD investigating flow and heat transfer characteristics in a natural circulation loop
Journal article   Peer reviewed

CFD investigating flow and heat transfer characteristics in a natural circulation loop

J.Y. Wang, T.J. Chuang and Y.M. Ferng
Annals of Nuclear Energy, Vol.58, pp.65-71
2013

Abstract

Compressible CFD model Natural circulation Passive safety system
Natural circulation is the most important heat removal mechanism for passive safety systems in new-design nuclear power plants. It is important to investigate the flow and heat transfer characteristics related to the natural circulation mechanism. In this paper, a compressible three-dimensional (3-D) CFD model is proposed to investigate these phenomena in a natural circulation loop. The flow and heat transfer behaviors in a loop can be reasonably captured by the present model, which includes the secondary flow within the elbow and the thermal stratification in the horizontal pipe, etc. This model is also validated with the existing experimental data. Compared with the measured results including time histories of local maximum fluid temperature and temperature difference across the heater, and the relationship between Re ss and Gr m /N G , the present predicted results show good agreement. These comparisons reveal that the present CFD methodology can be applied in simulating the thermal-hydraulic characteristics related to the natural circulation mechanism in confidence.© 2013 Elsevier Ltd. All rights reserved.

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