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Modeling and Numerical Simulation of Wings Effect on Turbulent Flow between Two Contra-Rotating Discs 被引量:1
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作者 m. raddaoui 《Journal of Energy and Power Engineering》 2011年第1期42-47,共6页
关键词 数值模拟 旋转圆盘 翅膀 雷诺应力模型 湍流模型 紊流 建模 工业应用
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Numerical Simulation of Aspect Ratio Effect on Turbulent Flow in Rotor-Stator System
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作者 m. raddaoui 《Journal of Environmental Science and Engineering》 2010年第12期69-76,共8页
关键词 定子系统 数值模拟 长宽比 湍流 转子
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Numerical Simulation of Aspect Ratio Effect on Turbulent Annular Flows
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作者 m. raddaoui 《Journal of Energy and Power Engineering》 2010年第12期17-23,共7页
关键词 数值模拟 湍流 环状流 长宽比 雷诺应力模型 不可压缩流体 能源控制 工业应用
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Influence of Rotating Speed Ratio on the Annular Turbulent Flow between Two Rotating Cylinders 被引量:2
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作者 m. raddaoui 《Journal of Modern Physics》 2013年第7期1000-1012,共13页
Rotating flows represent a very interesting area for researchers and industry for their extensive use in industrial and domestic machinery and especially for their great energy potential, annular flows are an example ... Rotating flows represent a very interesting area for researchers and industry for their extensive use in industrial and domestic machinery and especially for their great energy potential, annular flows are an example that draws the attention of researchers in recent years. The best design and optimization of these devices require knowledge of thermal, mechanical and hydrodynamic characteristics of flows circulating in these devices. An example of hydrodynamic parameters is the speed of rotation of the moving walls. This work is to study numerically the influence of the rotating speed ratio Γ of the two moving cylinders on the mean and especially on the turbulent quantities of the turbulent flow in the annular space. The numerical simulation is based on one-point statistical modeling using a low Reynolds number second-order full stress transport closure (RSM model), simulation code is not a black box but a completely transparent code where we can intervene at any step of the calculation. We have varied Γ from -1.0 to 1.0 while maintaining always the external cylinder with same speed Ω. The results show that the turbulence structure, profiles of mean velocities and the nature of the boundary layers of the mobile walls depend enormously on the ratio of speeds. The level of turbulence measured by the kinetic energy of turbulence and the Reynolds stresses shows well that the ratio Γ is an interesting parameter to exploit turbulence in this kind of annular flows. 展开更多
关键词 ROTATING FLOWS ANNULAR FLOWS Speed Ratio Numerical Simulation RSM Model Boundary Layers TURBULENCE
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