论文标题
在受限和扩展域中对流湍流特征之间的相似之处
Similarities between characteristics of convective turbulence in confined and extended domains
论文作者
论文摘要
为了理解典型的自然现象的典型雷利数字的湍流对流,如果必须在可用限制内优化所需的资源,则可以选择细胞中的计算研究。但是,伴随的水平限制会影响流动的某些特性。在这里,我们通过在0.1至200之间变化0.1至200介于0.1至200之间的速度和温度场中湍流波动的特征。 (PDF)在细胞的大块区域中温度波动的(PDF)主要是高斯,但随着$ pr $的增加,出发越来越高。我们通过计算速度衍生物的PDF和动能耗散速率来评估速度场的间歇性,并发现随着$ PR $降低的增加而增加间歇性。在对流的大整个区域中,一个适用于细胞细胞的常见结果,大宽高比细胞以及2D对流,是湍流的prandtl数量降低为$ pr^{ - 1/3} $。
To understand turbulent convection at very high Rayleigh numbers typical of natural phenomena, computational studies in slender cells are an option if the needed resources have to be optimized within available limits. However, the accompanying horizontal confinement affects some properties of the flow. Here, we explore the characteristics of turbulent fluctuations in the velocity and temperature fields in a cylindrical convection cell of aspect ratio 0.1 by varying the Prandtl number $Pr$ between 0.1 and 200 at a fixed Rayleigh number $Ra = 3 \times 10^{10}$, and find that the fluctuations weaken with increasing $Pr$, quantitatively as in aspect ratio 25. The probability density function (PDF) of temperature fluctuations in the bulk region of the slender cell remains mostly Gaussian, but increasing departures occur as $Pr$ increases beyond unity. We assess the intermittency of the velocity field by computing the PDFs of velocity derivatives and of the kinetic energy dissipation rate, and find increasing intermittency as $Pr$ decreases. In the bulk region of convection, a common result applicable to the slender cell, large aspect ratio cells, as well as in 2D convection, is that the turbulent Prandtl number decreases as $Pr^{-1/3}$.