Turbulence-induced Heat Transfer in PBMR Core Using LES and RANS
スポンサーリンク
概要
- 論文の詳細を見る
This paper introduces the results of numerical simulations on flow fields and relevant heat transfer in the pebble bed reactor (PBR) core. In the core, since the coolant passes a highly complicated random flow path with a high Reynolds number, an appropriate treatment of the turbulence is required. A set of simple experiments for the flow over a circular cylinder with heat transfer was conducted to finally select the large eddy simulation (LES) and k-ω model among the considering Reynolds-averaged Navier-Stokes (RANS) models for PBR application. Using these models, the PBR cores, whose geometries were simplified to the body-centered cubical (BCC) and face-centered cubical (FCC) structures, were simulated. A larger pressure drop, a more random flow field, a higher vorticity magnitude and a higher temperature at the local hot spots on the pebble surface were found in the results of the LES than in those of RANS for both geometries. In cases of the LES, the flow structures were resolved up to the grid scales. Irregular distributions of the flow and local heat transfer were found in the BCC core, while relatively regular distributions for the FCC core. The turbulent nature of the coolant flow in the pebble core evidently affected the fuel surface temperature distribution.
- 社団法人 日本原子力学会の論文
- 2007-07-25
著者
-
Lee Won-jae
Korea Atomic Energy Research Institute
-
Yoon Su-jong
Department Of Nuclear Engineering Seoul National University
-
LEE Jung-Jae
Department of Nuclear Engineering, Seoul National University
-
PARK Goon-Cherl
Department of Nuclear Engineering, Seoul National University
-
Park Goon-cherl
Department Of Nuclear Engineering Seoul National University
-
Lee Jung-jae
Department Of Nuclear Engineering Seoul National University
関連論文
- Flow Structure of Subcooled Boiling Water Flow in a Subchannel of 3 × 3 Rod Bundles
- Computational Analysis of a Subcooled Boiling Flow with a One-group Interfacial Area Transport Equation
- Turbulence-induced Heat Transfer in PBMR Core Using LES and RANS
- Local Interfacial Structure of Subcooled Boiling Flow in a Heated Annulus