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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Optimization of Trailing-Edge Serrations to Reduce Open-Rotor Tonal Interaction Noise
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Optimization of Trailing-Edge Serrations to Reduce Open-Rotor Tonal Interaction Noise

机译:后缘锯齿的优化,以减少开放式音调互动噪声

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摘要

A major source of contra-rotating open rotor (CROR) tonal noise is caused by the interaction of the front-rotor (FR) wakes with the aft-rotor blades. Inspired by chevron nozzles, which increase the mixing process in jet shear layers, serrations are implemented at the FR trailing-edge in order to increase the wake mixing and thus reduce the tones. The depth and width of the serrations are optimized with a multi-objective, metamodel-assisted evolutionary algorithm. For each member, a steady-state Reynolds-averaged Navier–Stokes (RANS) simulation is performed, which is coupled with an analytical noise prediction method in order to evaluate the noise reduction due to the serrations. The results confirm that tonal interaction noise can be reduced by means of trailing-edge serrations. It is found that the major noise reduction mechanism for wake interaction is attributed to increased destructive interferences occurring in spanwise direction. The tonal noise generated through the interaction of the rear rotor (RR) potential field with the FR trailing edge is also slightly reduced because of the circumferential and axial shift of the serrated trailing edge. Furthermore, the present study demonstrates the feasibility of performing an acoustic optimization with a hybrid approach that predicts the noise analytically and extracts the aerodynamic input data from a steady-state RANS flow solution.
机译:对抗旋转开口转子(CROR)色调噪声的主要来源是由前转子(FR)与后转子叶片的相互作用引起的。通过凹槽喷嘴的启发,该喷嘴增加了喷射剪切层中的混合过程,在FR后缘上实施了锯齿,以增加唤醒混合,从而减少色调。锯齿化的深度和宽度用多目标,元模型辅助进化算法进行了优化。对于每个构件,执行稳态雷诺平均天Navier-Stokes(RANS)模拟,其与分析噪声预测方法耦合,以便评估由于锯齿引起的降噪。结果证实,通过后缘锯齿可以降低色调交互噪声。发现唤醒相互作用的主要降噪机制归因于在南方方向上增加破坏性干扰。由于锯齿状后缘的圆周和轴向偏移,通过后转子(RR)电位场的相互作用产生的色调噪声也略微减小。此外,本研究展示了用混合方法进行声学优化的可行性,其分析地预测噪声并从稳态RAN流溶液中提取空气动力学输入数据。

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