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THE SMALLEST TEMPERATURE SCALES IN A TURBULENT CHANNEL FLOW AT HIGH PRANDTL NUMBERS

机译:在高Prandtl数字的湍流通道流中最小的温度尺度

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The object of this paper is to perform the numerical simulations of the temperature fields at low Reynolds numbers, i.e. Re{sub}τ=150 and Re{sub}τ=170.8, and at Prandtl numbers, Pr=1 and Pr=100. The spatial scales of the velocity field can be successfully described with DNS accuracy, meanwhile the scales of temperature fields decreasing approximately with Pr{sup}3/2 and cannot be resolved for entire energy scalar spectra due to the computer limitations. To overcome these obstacles, filtering and damping of the highest temperature wave number modes in homogeneous directions are introduced rather than modeling the unresolved subgrid scales. First, numerical simulations at Pr = 1 are performed in order to make comparison of the temperature field described with DNS accuracy and filtered and damped temperature fields described with coarser numerical grids. Obtained results show that at least first and second order statistics are comparable to the DNS ones. Next step is to analyze this approach at two orders of magnitude higher Prandtl numbers, i.e. Pr = 100. Comparison is a little bit difficult because no real DNS of the temperature fields at such high Prandtl number has been performed so far. But we estimate that results are still accurate at least in the proximity of the wall.
机译:本文的目的是在低雷诺数,即重新{子}τ= 150和R e {子}τ= 170.8,并且在普朗特数执行温度场的数值仿真,PR = 1和Pr = 100。速度场的空间尺度可以与DNS精度成功地描述的那样,温度场与镨{SUP} 3/2大致减小的同时鳞及对整个能量标量光谱不能被解析,由于计算机的限制。为了克服这些障碍,引入了均匀方向上最高温度波数模式的滤波和阻尼,而不是建模未解决的子级尺度。首先,执行PR = 1的数值模拟,以便进行用DNS精度描述的温度场和用较粗糙的数值网格描述的滤波和阻尼温度场进行比较。获得的结果表明,至少第一和二阶统计数据与DNS统计数据相当。下一步是以两个数量级的级级普朗特数字分析这种方法,即Pr = 100.比较是困难的,因为到目前为止还没有执行如此高的PRANDTL号码的温度场的真实DNS。但我们估计结果至少在墙壁附近至少准确。

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