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Assessment of Front-Rotor Trailing-Edge-Blowing for the Reduction of Open Rotor Noise Emissions

机译:前转子后缘吹气评估,以减少开放式转子的噪声排放

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A possible way to decrease the noise contribution of the interaction tones of a contra-rotating open rotor (CROR) is through application of trailing edge blowing (TEB), by reducing the momentum deficit of the front rotor wake and therefore its interaction with the aft rotor. In this contribution, we present a novel assessment of front rotor TEB for the reduction of CROR noise. For this purpose, the Airbus Clean Sky generic Open Rotor configuration AI-PX7 configuration has been modified to include TEB at the front rotor blades. With the DLR CFD-code TAU, uRANS simulations have been made of the baseline and the TEB configuration. Subsequently, an aeroacoustic analysis has been performed with the Ffowcs-Williams/Hawkings tool APSIM+ for both configurations. The results show a negligible degradation of the aerodynamic performance, with slightly higher unsteady loading of the aft rotor. This is resulting from the front rotor tip vortices which impinge on the aft rotor due to insufficient aft rotor cropping. On the aeroacoustics side, interaction tones are most affected showing a slight decrease in maximum overall sound pressure level. Rotor-alone tones show approximately similar sound pressure levels near the rotor plane. It is demonstrated that indeed it is possible to influence CROR noise emission from interaction tones with TEB. However, the considered CROR geometry decreases the noise reduction potential due to the aforementioned small aft rotor cropping. New simulations are underway, addressing the current shortcomings of the CROR geometry (aft rotor cropping) and practical applicability (massflow reduction of TEB).
机译:减少反向旋转转子(CROR)的相互作用声的噪声贡献的一种可能方法是通过应用后缘吹气(TEB),通过减少前转子尾流的动量不足并因此降低其与后部转子的相互作用转子。在此贡献中,我们提出了一种用于降低CROR噪声的前转子TEB的新颖评估方法。为此,对空客Clean Sky通用型开放转子配置AI-PX7进行了修改,在前转子叶片处包括了TEB。使用DLR CFD代码TAU,已经对基线和TEB配置进行了uRANS仿真。随后,针对这两种配置,都使用Ffowcs-Williams / Hawkings工具APSIM +进行了空气声学分析。结果表明,空气动力性能的降低可忽略不计,后部转子的不稳定载荷略高。这是由于前转子尖端的涡流由于后转子裁剪不充分而撞击在后转子上的结果。在航空声学方面,相互作用音受最大影响,显示最大总体声压级略有下降。仅转子的音调在转子平面附近显示出近似相似的声压级。事实证明,确实有可能影响与TEB交互音调产生的CROR噪声。然而,由于上述小的后转子裁剪,所考虑的CROR几何形状降低了降噪的潜力。新的模拟正在进行中,解决了CROR几何体(转子后部裁剪)的当前缺点和实用性(TEB的质量流量降低)。

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