首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >DEVELOPMENT OF THE AIR BLOWING AND SUCTION TECHNOLOGY FOR CONTROL OF A TURBULENT FLOW ON AN AIRFOIL
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DEVELOPMENT OF THE AIR BLOWING AND SUCTION TECHNOLOGY FOR CONTROL OF A TURBULENT FLOW ON AN AIRFOIL

机译:控制翼型湍流的鼓风吸风技术的发展

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摘要

The possibility of using a combined method of control of an incompressible turbulent boundary layer on the NACA 0012 airfoil is studied experimentally and numerically. The method is based on air blowing and suction through finely perforated walls, which are parts of the airfoil. The study is performed for Reynolds numbers Re-c = 0.7 bold /bold10(6) and angles of attack from - 6 to 6 degrees. It is demonstrated that the mechanism responsible for changes in the aerodynamic characteristics of the airfoil is the same for all variants of the control action in the form of air blowing and suction: an increase in pressure due to air blowing on one side of the airfoil and a decrease in pressure due to air suction on the opposite side lead to an increase in the lift force and, finally, to a gain in the lift-to-drag ratio of the airfoil, which reaches three units at approximate to 0 degrees. Unfortunately, the efficiency of this method of boundary layer control decreases with increasing .
机译:实验和数值研究了使用组合方法控制NACA 0012机翼上不可压缩湍流边界层的可能性。该方法基于通过细孔壁的吹气和抽吸,细孔壁是机翼的一部分。该研究是针对雷诺数Re-c = 0.7 10(6)以及从-6到6度的迎角进行的。结果表明,对翼型的空气动力特性变化负责的机制对于所有形式的控制动作都是以吹气和吸气的形式相同的:由于在翼型的一侧吹气引起的压力增加和由于相对侧的空气吸入而导致的压力降低导致升力增加,最后导致翼型的升阻比增加,达到约0度的三个单位。不幸的是,这种边界层控制方法的效率随着增加而降低。

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