DIRECT NUMERICAL-SIMULATION OF PASSIVE SCALAR FIELD IN A TURBULENT CHANNEL FLOW

被引:386
作者
KASAGI, N
TOMITA, Y
KURODA, A
机构
[1] Department of Mechanical Engineering, The University of Tokyo, Tokyo, 113, Bunkyo-ku
来源
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME | 1992年 / 114卷 / 03期
关键词
FORCED CONVECTION; NUMERICAL METHODS; TURBULENCE;
D O I
10.1115/1.2911323
中图分类号
O414.1 [热力学];
学科分类号
摘要
A direct numerical simulation (DNS) of the fully developed thermal field in a two-dimensional turbulent channel flow of air was carried out. The isoflux condition was imposed on the two walls so that the local mean temperature increased linearly in the streamwise direction. With any buoyancy effect neglected, temperature was considered as a passive scalar. The computation was executed on 1,589,248 grid points by using a spectral method. The statistics obtained were root-mean-square temperature fluctuations, turbulent heat fluxes, turbulent Prandtl number, and dissipation time scales. They agreed fairly well with existing experimental and numerical simulation data. Each term in the budget equations of temperature variance, its dissipation rate, and turbulent heat fluxes was also calculated. It was found that the temperature fluctuation-theta' was closely correlated with the stream wise velocity fluctuation u', particularly in the near-wall region. Hence, the distribution of budget terms for the streamwise and wall-normal heat fluxes, u'theta'BAR and v'theta'BAR, were very similar to those for the two Reynolds stress components, u'u'BAR and u'v'BAR.
引用
收藏
页码:598 / 606
页数:9
相关论文
共 26 条
[1]   RATIO OF SCALAR AND VELOCITY DISSIPATION TIME SCALES IN SHEAR-FLOW TURBULENCE [J].
BEGUIER, C ;
DEKEYSER, I ;
LAUNDER, BE .
PHYSICS OF FLUIDS, 1978, 21 (03) :307-310
[2]  
BLACKWELL BF, 1972, HMT16 STANF U MECH E
[3]   SPECTRAL MEASUREMENTS OF TURBULENT HEAT AND MOMENTUM-TRANSFER IN FULLY DEVELOPED PIPE-FLOW [J].
BREMHORST, K ;
BULLOCK, KJ .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1973, 16 (12) :2141-2154
[4]  
CEBECI T, 1973, ASME, V95, P227
[5]  
HISHIDA M, 1986, 8TH P INT HEAT TRANS, V3, P925
[6]  
IRITANI Y, 1984, TURBULENT SHEAR FLOW, V4, P223
[7]  
ISSHIKI S, 1990, COMMUNICATION
[9]  
KASAGI N, 1989, T ASME, V111, P385
[10]  
Kays W.M., 1980, CONVECTIVE HEAT MASS