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RANS Analyses of Turbofan Nozzles with Wedge Deflectors for Noise Reduction

机译:带楔形偏转器的涡轮风扇喷嘴的RANS分析用于降噪

摘要

Computational fluid dynamics (CFD) was used to evaluate a promising concept for reducing the noise at take-off of dual-stream, turbofan nozzles. The concept, offset stream technology, reduces the jet noise observed on the ground by diverting (offsetting) the majority of the fan flow below the core flow, thickening this layer between the high velocity core flow and the ground observers. In this study a wedge placed in the internal fan stream is used as the diverter. Wind, a Reynolds Averaged Navier-Stokes (RANS) code, was used to analyze the flowfield of the exhaust plume and to calculate nozzle performance. Results showed that the wedge effectively diverts the fan flow and the turbulent kinetic energy on the observer side of the nozzle is reduced. The reduction in turbulent kinetic energy should correspond to a reduction in noise. The blockage due to the wedge reduces the fan massflow proportional to its blockage and the overall thrust is consequently reduced. The CFD predictions are in very good agreement with experimental data. This noise reduction concept shows promise for reduced jet noise at a small reduction in thrust. It has been demonstrated that RANS CFD can be used to optimize this concept.
机译:计算流体动力学(CFD)用于评估一个有前途的概念,以减少双流涡轮风扇喷嘴起飞时的噪声。偏移流技术的概念是通过将大部分风扇流转移(抵消)到核心流以下来减少在地面上观察到的喷射噪声,从而使高速核心流和地面观测器之间的这一层变厚。在这项研究中,将楔形物放置在内部风扇流中作为分流器。使用雷诺平均Navier-Stokes(RANS)代码的Wind来分析排气羽流的流场并计算喷嘴性能。结果表明,楔形有效地转移了风扇的流量,并减少了喷嘴观察者一侧的湍动能。湍动能的减少应对应于噪音的减少。楔形物造成的阻塞会降低风扇的质量流量,与风扇的阻塞成正比,因此总推力会减小。 CFD的预测与实验数据非常吻合。这种降噪概念显示了在较小的推力降低的情况下降低喷射噪声的希望。已经证明,可以将RANS CFD用于优化此概念。

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    DeBonis James R.;

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  • 年度 2008
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