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Experimental Investigation of the Aeroacoustic Coupling Between the Non-Planar Modes of a Resonator and the Misaligned Jet-Slot Oscillator

机译:谐振器非平面模式与不对准射流槽振荡器的气声耦合的实验研究

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摘要

The jet-slot oscillator is a source of aeroacoustic self-sustained tones resulting from the impingement of the vortical structures of a plane jet onto a slotted plate. The coupling of this type of aeroacoustic source with high-order acoustic resonances of the flow-supply duct is experimentally studied, in the particular case where the jet-exit and the obstacle are misaligned in the spanwise direction. An experimental setup based on microphones and hot-wire probes is used to investigate this coupling. It is shown that: (i) the misaligned jet-slot oscillator can be coupled to non-planar (transverse) modes of the flow-supply duct, (ii) the vortex tubes spanwise morphology is governed by the phase pattern of the excited modes, and (iii) the impingement of the vortices on the inclined obstacle tends to occur in phase in the spanwise direction, in order to enhance the coherence of the interaction along the slot. An investigation of the excited modes as a function of the plate inclination angle and of the streamwise slot position was then conducted. For small inclination angles, the coupling involves a planar mode or a combination of planar and transverse modes. For higher misalignment angles the coupling involves transverse modes or "opposite-transverse" modes, generating vortices with an inclination angle opposite to the plate inclination angle. The influence of the coupling nature on tone production (emission frequency and SPL) was thus evaluated.
机译:喷气狭缝振荡器是空气声自持音的来源,其是由于平面喷气的涡旋结构撞击在狭缝板上而产生的。在特殊情况下,射流出口和障碍物在翼展方向上未对准,这种情况下,这种类型的航空声源与供气管道的高阶声共振之间的耦合关系得到了实验研究。基于麦克风和热线探针的实验设置用于研究这种耦合。结果表明:(i)错位的射流槽振荡器可以耦合到供气管道的非平面(横向)模式,(ii)涡流管的展向形态受激励模式的相位模式支配(iii)涡流倾向于在翼展方向上同相发生,以增强沿缝隙的相互作用的连贯性。然后进行了与板倾角和流向缝隙位置有关的激发模态的研究。对于较小的倾斜角,耦合包括平面模式或平面模式和横向模式的组合。对于较大的偏心角,耦合涉及横向模式或“相反横向”模式,从而产生旋涡,其旋涡的倾斜角与板的倾斜角相反。因此,评估了耦合性质对音调产生(发射频率和SPL)的影响。

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