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Contra-Rotating Open Rotor Tone Noise Prediction

机译:对开转子音噪声预测

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Reliable prediction of contra-rotating open rotor (CROR) noise is an essential element of any strategy for the development of low-noise open rotor propulsion systems that can meet both the community noise regulations and cabin noise limits. Since CROR noise spectra exhibit a preponderance of tones, significant efforts have been directed towards predicting their tone content. To that end, there has been an ongoing effort at NASA to assess various in-house open rotor tone noise prediction tools using a benchmark CROR blade set for which significant aerodynamic and acoustic data have been acquired in wind tunnel tests. In the work presented here, the focus is on the nearfield noise of the benchmark open rotor blade set at the cruise condition. Using an analytical CROR tone noise model with input from high-fidelity aerodynamic simulations, tone noise spectra have been predicted and compared with the experimental data. Comparisons indicate that the theoretical predictions are in good agreement with the data, especially for the dominant tones and for the overall sound pressure level of tones. The results also indicate that, whereas the individual rotor tones are well predicted by the combination of the thickness and loading sources, for the interaction tones it is essential that the quadrupole source is also included in the analysis.
机译:可靠地预测反向旋转开放转子(CROR)噪声是开发可同时满足社区噪声法规和机舱噪声限制的低噪声开放转子推进系统的任何策略的基本要素。由于CROR噪声频谱显示出大量的音调,因此已经做出了巨大的努力来预测其音调含量。为此,NASA一直在努力使用基准CROR叶片套件评估各种内部开放式转子音噪声预测工具,为此在风洞测试中已获取了重要的空气动力学和声学数据。在此处介绍的工作中,重点是在巡航条件下设置的基准开放式转子叶片的近场噪声。使用具有高保真空气动力学模拟输入的分析CROR音调噪声模型,可以预测音调噪声谱并将其与实验数据进行比较。比较表明,理论预测与数据非常吻合,尤其是对于主音和音的总体声压级。结果还表明,尽管通过厚度和负载源的组合可以很好地预测单个转子的音调,但对于相互作用的音调,必须将四极子源也包括在分析中。

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