NUMERICAL STUDY OF HEAT TRANSFER AROUND THE SMALL SCALE AIRFOIL USING VARIOUS TURBULENCE MODELS

被引:19
作者
Bekka, Nadir [1 ]
Bessaih, Rachid [2 ]
Sellam, Mohamed [1 ]
Chpoun, Amer [1 ]
机构
[1] Univ Evry Val Essonne, LMEE Lab, F-91020 Evry, France
[2] Univ Mentouri Constantine, Fac Engn, Dept Mech Engn, LEAP Lab, Constantine, Algeria
关键词
MICRO AIR VEHICLE; FLOW; PREDICTION; AERODYNAMICS; SEPARATION;
D O I
10.1080/10407780903508005
中图分类号
O414.1 [热力学];
学科分类号
摘要
A numerical investigation of low-Reynolds number flows with thermal effect around the MAV airfoils using various turbulence models, including an algebraic Baldwin-Lomax model, Spalart-Allmaras one equation, and two equation (k-omega and SST-k-omega) turbulence models, is presented. First, the thermal effect on the aerodynamic efficiency is studied for flow around a rectangular MAV wing, based on the NACA0012 airfoil section at low-aspect ratio (AR = 2) and an angle of attack equal to 0 degrees. Second, details of the thermal effect are limited to the two-dimensional NACA0012 airfoil with chord length of 3.81 cm. This study shows that the improvement of aerodynamic efficiency (increase lift and reduce drag) is achieved by the generation of a temperature difference between extrados and intrados of the airfoil (by cooling the upper surface and heating the lower surface). The numerical results obtained with various turbulence models are in good agreement with experiment data, except the k-omega turbulence model. These results are performed with the CFD-FASTRAN code, using the fully implicit scheme for time integration and the upwind Roe flux difference splitting scheme for space discretization augmented by a high order Osher-Chakravarthy limiter.
引用
收藏
页码:946 / 969
页数:24
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