首页> 外文会议>International Conference on Microchannels and Minichannels(ICMM2004); 20040617-20040619; Rochester,NY; US >TURBULENT STATISTICS OF RAREFIED FLOWS IN MICROCHANNEL FLOW AND HEAT TRANSFER
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TURBULENT STATISTICS OF RAREFIED FLOWS IN MICROCHANNEL FLOW AND HEAT TRANSFER

机译:微通道流动和换热中稀薄流动的湍流统计

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Direct numerical simulation has been carried out to investigate the effect of weak rarefaction on turbulent gas flow and heat transfer characteristics in mirochannel. The Reynolds number based on the friction velocity and the channel half width is 150. Grid number is 64x128x64. Fractional time step method is employed for the unsteady Navier-Stokes equations, and the governing equations are discretized with Finite Difference Method. Statistical quantities such as turbulent intensity, Reynolds shear stress, turbulent heat flux and temperature variance are obtained under various Knudsen number from 0 to 0.05. The results show that rarefaction can influence the turbulent flow and heat transfer statistics. The streamwise mean velocity and temperature increase with increase of Kn number. In the near wall region rarefaction can increase the turbulent intensities and temperature variance. The effect of rarefaction on Reynolds shear stress and wall-normal heat flux arc presented. The instantaneous velocity fluctuations in the vicinity of the wall arc visualized and the influence of Kn number on the flow structure is discussed.
机译:已经进行了直接数值模拟,以研究弱稀疏化对微通道内湍流和传热特性的影响。基于摩擦速度和通道半宽度的雷诺数为150。网格数为64x128x64。非定常的Navier-Stokes方程采用分数时间步长法,控制方程采用有限差分法离散化。在从0到0.05的各种Knudsen数下,获得了统计量,例如湍流强度,雷诺剪切应力,湍流热通量和温度变化。结果表明,稀疏化会影响湍流和传热统计。随着Kn数的增加,沿流方向的平均速度和温度增加。在近壁区域,稀疏作用会增加湍流强度和温度变化。给出了稀疏化对雷诺剪切应力和壁法向热通量电弧的影响。讨论了壁弧附近的瞬时速度波动,并讨论了Kn数对流动结构的影响。

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