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cfd-lab:~/zh/tools/turbulence-inlet-visualizeronline
$ cd ..

湍流入口尺度可视化

由湍流强度和长度尺度计算 k、epsilon、omega,并可视化入口涡尺度。

visual calculator湍流与壁面建模

先看流动形态,再相信数字。

该工具把 CFD 设置转换为工况、尺度和主导效应提示。调节下方计算器,观察动态图与计算结果如何一起变化。

01
输入尺度
02
模型
03
判断
turbulenceinlet BCeddy scalek-omega
公式
KaTeX rendered
k = 1.5 (I U)ˆ2epsilon = Cmuˆ(3/4) kˆ(3/2) / lomega = sqrt(k)/(Cmuˆ(1/4) l)\begin{aligned}\text{k = 1.5 (I U)\^{}2}\\[0.35em]\text{epsilon = Cmu\^{}(3/4) k\^{}(3/2) / l}\\[0.35em]\text{omega = sqrt(k)/(Cmu\^{}(1/4) l)}\end{aligned}
ASCII sourcek = 1.5 (I U)^2, epsilon = Cmu^(3/4) k^(3/2) / l, omega = sqrt(k)/(Cmu^(1/4) l)
Turbulence inlet scalepipe / duct: l = 0.07Du' = 0.6000 m/slarger circles mean larger imposed turbulence length scale
k (m^2/s^2)
0.5400
epsilon (m^2/s^3)
11.6435
omega (1/s)
239.5787
length scale l (m)
0.0056
u prime (m/s)
0.6000
eddy turnover (s)
0.0093
l / D
0.0700
inlet mode
pipe / duct

Use this to sanity-check k-epsilon or k-omega inlet boundary conditions before copying values into a solver dictionary.