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On the use of surface porosity to reduce wake-stator interaction noise.

机译:利用表面孔隙率来减少唤醒定子相互作用的噪声。

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An innovative application of existing technology is proposed for attenuating the effects of transient phenomena, such as rotor-stator and rotor-strut interactions, linked to noise and fatigue failure in turbomachinery environments. A computational study was designed to assess the potential of Passive Porosity Technology as a mechanism for alleviating interaction effects and radiated noise by reducing the fluctuating forces acting on the vane surfaces. The study involved a typical high bypass fan stator airfoil immersed in a free field and exposed to the effects of a transversely moving wake. Time histories of the primitive aerodynamic variables obtained from Computational Fluid Dynamics (CFD) calculations were input into an acoustic prediction code to estimate noise levels at a radial distance of ten chords from the stator airfoil. This procedure was performed on the solid airfoil to obtain a baseline, and on approximately fifty porous configurations in order to isolate those that would yield maximum noise reductions without compromising the aerodynamic performance of the stator.; It was found during the study that, for a single stator immersed in a free flow field, communication between regions of high pressure differential—made possible by the use of passive porosity—tends to induce a time-dependent oscillatory pattern of small inflow-outflow regions near the stator leading edge (LE), which is well established before wake effects come into play. The oscillatory pattern starts at the LE, and travels downstream on both suction and pressure sides of the airfoil. The amplitude of the oscillations seemed to be proportional to the extension of the porous patch on the pressure side. Regardless of this effect, which may not have occurred if the airfoil were placed within a stator cascade, communication between regions of high pressure differential is necessary to significantly alter the noise radiation pattern of the stator airfoil. Whether those changes result in noise abatement or enhancement depends primarily on the placement and extension of the porous patches. For most viable configurations, porosity reduced loading noise but increased thickness noise. Variations in nominal porosity were of secondary importance.; In general, the best aerodynamic performers (i.e., those configurations that were able to reduce unsteady lift without severely altering the lift and/or drag characteristics of the solid airfoil) were also the best acoustic performers. As a result of using passive surface porosity, overall peak radiated noise was reduced by approximately 1.0 dB. This reduction increased to about 2.5 dB when the effects of loading noise alone were considered.
机译:提出了一种现有技术的创新应用,以减轻瞬态现象的影响,例如与涡轮机械环境中的噪声和疲劳故障有关的转子-定子和转子-支柱相互作用。设计了一项计算研究,以评估通过减少作用在叶片表面上的波动力来降低相互作用效应和辐射噪声的机制的被动孔隙技术的潜力。该研究涉及一个典型的高旁通风扇定子翼型,该翼型沉浸在自由场中,并受到横向运动尾流的影响。从计算流体动力学(CFD)计算获得的原始空气动力学变量的时间历史记录被输入到声学预测代码中,以估计距定子机翼径向距离为十弦的噪声水平。该程序是在固体翼型上进行的,以获取基线,并在大约五十种多孔结构上进行,以隔离那些能够最大程度地降低噪声而又不损害定子空气动力学性能的结构。在研究过程中发现,对于浸没在自由流场中的单个定子,高压差区域之间的连通(通过使用被动孔隙度可以实现)往往会引起随时间变化的小流入流出的振荡模式定子前缘(LE)附近的区域,这在唤醒效应发挥作用之前已得到充分确立。振荡模式始于LE,并在翼型的吸力侧和压力侧都向下游移动。振荡的幅度似乎与多孔片在压力侧的延伸成比例。不管这种效果(如果将翼型件放置在定子叶栅内可能不会发生),高压差区域之间的连通对于显着改变定子翼型件的噪声辐射图是必要的。这些变化是否导致噪声减小或增强,主要取决于多孔贴片的放置和扩展。对于大多数可行的配置,孔隙率可减少加载噪音,但会增加厚度噪音。次要的是名义孔隙率的变化。通常,最佳的空气动力学性能(即那些能够在不严重改变固体翼型的升力和/或阻力特性的情况下减少不稳定升力的构造)也是最佳的声学性能。由于使用了被动表面孔隙率,总的峰值辐射噪声降低了约1.0 dB。当仅考虑负载噪声的影响时,这种减小增加到约2.5 dB。

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