首页> 外文会议>International conference on nuclear engineering >INVESTIGATION OF MHD RANS MODELING BASE ON DNS DATABASE UNDER THE ADVANCED BLANKET DESIGN CONDITIONS UTILIZED MOLTEN SALT
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INVESTIGATION OF MHD RANS MODELING BASE ON DNS DATABASE UNDER THE ADVANCED BLANKET DESIGN CONDITIONS UTILIZED MOLTEN SALT

机译:在先进的盲板设计条件下利用盐溶的DNS数据库对MHD RANS建模的研究。

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In this study, validations of Reynolds Averaged Navier-Stokes Simulation (RANS) based on Kenjeres & Hanjalic MHD turbulence model (Int. J. Heat & Fluid Flow, 21, 2000) coupled with the low-Reynolds number k-epsilon model have been conducted with the usage of Direct Numerical Simulation (DNS) database. DNS database of turbulent channel flow imposed wall-normal magnetic field on, are established in condition of bulk Reynolds number 40000, Hartmann number 24, and Prandtl number 5. As the results, the Nagano & Shimada model (Trans. JSME series B. 59, 1993) coupled with Kenjeres & Hanjalic MHD turbulence model has the better availability compared with Myong & Kasagi model (Int. Fluid Eng, 109, 1990) in estimation of the heat transfer degradation in MHD turbulent heat transfer.
机译:在这项研究中,基于Kenjeres和Hanjalic MHD湍流模型(Int。J. Heat&Fluid Flow,21,2000年)以及低雷诺数k-ε模型对雷诺平均Navier-Stokes模拟(RANS)进行了验证。使用直接数值模拟(DNS)数据库进行。在大体积雷诺数40000,哈特曼数24和普朗特数5的条件下,建立了施加壁面法向磁场的湍流通道流的DNS数据库。结果,长野&岛田模型(Trans。JSME系列B. 59) (1993年),与Kenjeres和Hanjalic的MHD湍流模型相结合,与Myong和Kasagi模型(Int。Fluid Eng,109,1990年)相比,MHD湍流传热的退化要好于Myong和Kasagi模型(Int。Fluid Eng,109,1990)。

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