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The Influence of Realistic Reynolds Numbers on Slat Noise Simulations

机译:实际雷诺数对板条噪声模拟的影响

摘要

The slat noise from the 30P/30N high-lift system has been computed using a computational fluid dynamics code in conjunction with a Ffowcs Williams-Hawkings solver. Varying the Reynolds number from 1.71 to 12.0 million based on the stowed chord resulted in slight changes in the radiated noise. Tonal features in the spectra were robust and evident for all Reynolds numbers and even when a spanwise flow was imposed. The general trends observed in near-field fluctuations were also similar for all the different Reynolds numbers. Experiments on simplified, subscale high-lift systems have exhibited noticeable dependencies on the Reynolds number and tripping, although primarily for tonal features rather than the broadband portion of the spectra. Either the 30P/30N model behaves differently, or the computational model is unable to capture these effects. Hence, the results underscore the need for more detailed measurements of the slat cove flow.
机译:30P / 30N高升力系统的板条噪声已使用计算流体力学代码结合Ffowcs Williams-Hawkings求解器进行了计算。根据收起的弦将雷诺数从1.71更改为1,200万,导致辐射噪声略有变化。对于所有雷诺数,甚至在施加翼展方向流动时,光谱中的音调特征都非常强大且明显。对于所有不同的雷诺数,在近场波动中观察到的总体趋势也相似。尽管主要是针对音调特征而不是频谱的宽带部分,但简化的,小规模的高升力系统上的实验显示出对雷诺数和跳闸的显着依赖性。 30P / 30N模型的行为有所不同,或者计算模型无法捕获这些影响。因此,结果强调了需要对板条湾流量进行更详细的测量。

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