本文用Smagorinsky-Lilly亚网格尺度湍流模型对旋流突扩流动(s=0.53)和无旋突扩流动(s=0)进行了大涡模拟(LES模拟),同时分别用压力应变项为IPCM和IPCM+Wall模型的雷诺应力方程模型进行了RANS模拟,和LES的统计结果对比.LES的统计结果与雷诺应力模型的模拟结果及实验对照表明,LES结果与实验结果的吻合比雷诺应力模型的好,说明所用的亚网格尺度湍流模型对旋流流动是适用的,LES结果是可信的.LES的瞬态结果揭示出在旋流作用下,流场中存在复杂的旋涡脱落现象.大涡结构极易破碎成小涡,而在无旋突扩流动的情况下,由于剪切的作用更强,大涡结构的尺寸和范围比旋流流动的要大.
参考文献
[1] | L.X.Zhou;Y.Xu;L.S.Fan;Y.Li .Simulation of swirling gas-particle flows using an improved second-order moment two-phase turbulence model[J].Powder Technology,2001(2/3):178-189. |
[2] | Fu S.Modeling of the Strongly Swirling Flows with Second-Moment Closure[A].eijing: International Academic Publishers,1994:2-41. |
[3] | Smagorinsky J .General Circulation Experiments with Primitive Equations[J].Monthly Weather Review,1963,91(03):99-164. |
[4] | Lilly D K .On the Application of the Eddy Viscosity Concept in the Inertial Subrange of Turbulence[J].NCAR Manuscript,1966,123 |
[5] | Germano M;Piomelli U;Moin P .A Dynamic SubgridScale Eddy Viscosity Model[J].Physics of Fluids,1991,3(07):1760-1773. |
[6] | Pan Y K;Tanaka T;Tsuji Y.Large-Eddy Simulation of Particle-Laden Rotating Channel Flow[A].Boston, CD-ROM,2000 |
[7] | Kim W W;Menon S;Mongia H C .Large-Eddy Simulation of a Gas Turbine Combustor Flow[J].Combustion Science and Technology,1999,143:25-60. |
[8] | Roback R;Johnson B V .Mass and Momentum Turbulent Transport Experiments with Confined Swirling Coaxial Jets[R].Interim Report NASA-CR-168252,1983. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%