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Computational Investigation of Tangential Slot Blowing on a Generic Chined Forebody

机译:普通前肢切向吹气的计算研究

摘要

The effect of tangential slot blowing on the flowfield about a generic chined forebody at high angles of attack is investigated numerically using solutions of the thin-layer, Reynolds-averaged, Navier-Stokes equations. The effects of jet mass now ratios, angle of attack, and blowing slot location in the axial and circumferential directions are studied. The computed results compare well with available wind-tunnel experimental data. Computational results show that for a given mass now rate, the yawing moments generated by slot blowing increase as the body angle of attack increases. It is observed that greater changes in the yawing moments are produced by a slot located closest to the lip of the nose. Also, computational solutions show that inboard blowing across the top surface is more effective at generating yawing moments than blowing outboard from the bottom surface.
机译:使用薄层,雷诺平均,Navier-Stokes方程的解,以数值方式研究了切向缝隙吹气在大迎角下对普通下颌前体的流场的影响。现在研究射流质量比,攻角和吹气槽位置在轴向和圆周方向上的影响。计算结果与可用的风洞实验数据进行了很好的比较。计算结果表明,对于给定的质量速率,槽缝吹气产生的偏航力矩随迎角的增加而增加。观察到偏航力矩的更大变化是由最靠近鼻唇的狭槽产生的。此外,计算解决方案还显示,与从底部表面向外侧吹气相比,在顶部表面吹向内侧吹气在产生偏航力矩方面更为有效。

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