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Acoustic theory of the many-bladed contra-rotating propeller: physics of the wake interaction noise critical sources

机译:许多叶片旋转螺旋桨的声学理论:唤醒互动噪声关键来源的物理学

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In the theory of interaction noise from contra-rotating propellers with many blades, the usual far-field radiation formulae can be re-cast as a double integral, over a source surface, which can be evaluated asymptotically solely in terms of the contributions from critical points. The paper shows that these critical points have a particularly interesting physical meaning. They relate to locations on an event line, running between hub and tip, that represent the locus of the wake-blade interactions at a fixed point in time. The event line rotates at the speed of the spinning interaction tone but does not coincide with the radial variation in either the wake location or the rear blade leading edge. At the precise critical locations on the event line, it is shown that the Mach number of the event line is unity in the direction of the observer (the sonic condition) and the tangent to the event line - at a fixed time - is normal to a line drawn between it and the observer (the normal-edge condition). The zero-mode case is also considered, for which we show that, even though the event line rotates at infinite speed, there can still exist locations that satisfy the sonic and normal-edge conditions. The paper also discusses the physical meaning of the lower-order boundary solutions from the hub and tip.
机译:在具有许多叶片的旋转螺旋桨的相互作用噪声理论中,通常的远场辐射公式可以作为双积分,在源表面上被重新铸造,这可以在临界贡献方面被渐近评估要点。本文表明,这些关键点具有特别有趣的物理意义。它们与事件线上的位置相关,在集线器和尖端之间运行,表示唤醒叶片交互的轨迹处于固定的时间点。事件线以旋转相互作用的速度旋转,但不与唤醒位置或后刀片前缘的径向变化一致。在事件线上的精确关键位置处,示出事件线的Mach数量在观察者(Sonic条件)方向上的统一性和事件线的切线 - 在固定时间 - 是正常的在它和观察者(正常边缘条件)之间绘制的线。还考虑了零模式案例,我们表明,即使事件线以无限速度旋转,也可以仍然存在满足Sonic和正常边缘条件的位置。本文还讨论了来自轮毂和尖端的下阶边界解决方案的物理含义。

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