Inicio  /  Aerospace  /  Vol: 6 Par: 2 (2019)  /  Artículo
ARTÍCULO
TITULO

Vortex Dynamics Study of the Canard Deflection Angles? Influence on the Sukhoi Su-30-Like Model to Improve Stall Delays at High AoA

Sutrisno    
Tri Agung Rohmat    
Setyawan Bekti Wibowo and Sigit Iswahyudi    

Resumen

The maneuverability of the Sukhoi Su-30 at very high angles of attack (AoA) was remarkably appealing. Canard angle, in cooperation with aircraft wing, created a flow pattern whereby, in that position, the fighter still had as much lifting force as possible in order not to stall. The behavior of changing canard angle configuration played an essential role in creating the strong vortex core so that it could delay the stall. The study of vortex dynamics at canard deflection angle gave an essential function in revealing the stall delay phenomenon. In this study, one could analyze the flow patterns and vortex dynamics ability of the Sukhoi Su-30-like model to delay stall due to the influence of canard deflection. The used of water tunnel facilities and computational fluid dynamics (CFD) based on Q-criterion has obtained clear and detailed visualization and aerodynamics data in revealing the phenomenon of vortex dynamics. It was found that between 30° and 40° canard deflection configurations, Sukhoi Su-30-like was able to produce the most robust flow interaction from the canard to the main wing. It was clearly seen that the vortex merging formation above the fighter heads was clearly visible capable of delaying stall until AoA 80°.

 Artículos similares

       
 
Peng Xu, Shanshan Jia, Dongao Li, Ould el Moctar and Changqing Jiang    
Vortex-induced vibration (VIV) of bluff bodies is one type of flow-induced vibration phenomenon, and the possibility of using it to harvest hydrokinetic energy from marine currents has recently been revealed. To develop an optimal harvester, various para... ver más

 
Karim Abu Salem, Giuseppe Palaia, Mario R. Chiarelli and Mario Bianchi    
The development of novel aircraft concepts and propulsion technologies requires up-to-date physics-based methods and tools for conceptual aircraft design. In this context, a simulation model for the take-off manoeuvre is proposed in this article, to be e... ver más
Revista: Aerospace

 
Hanyue Rao, Yifu Chen, Yayun Shi, Tihao Yang and Hongyang Liu    
Based on the adjoint method, the afterbody of a military transport aircraft was optimized and designed to meet engineering constraints under real flight conditions. Guidance for the key design parameters of the afterbody of the military transport aircraf... ver más
Revista: Aerospace

 
Wei Gao, Yishu Liu, Qifu Li and Bei Lu    
Using the unsteady vortex lattice method based on the potential flow theory, a rapid modeling approach is developed for the aerodynamic computation of multi-lifting surfaces. Multiple lifting surfaces with different geometric parameters and grid division... ver más
Revista: Aerospace

 
Ferenc Szlivka, Csaba Hetyei, Gusztáv Fekete and Ildikó Molnár    
Nowadays, there are numerous new features available in CFD (computational fluid dynamics) that can simulate complex physical phenomena, which used to be challenging to address. However, in current CFD software, certain problems can be simulated using dif... ver más
Revista: Applied Sciences