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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Near- and Far-Field Acoustic Measurements for Stepped Nozzles at Over- and Perfectly-Expanded Supersonic Jet Flow Conditions
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Near- and Far-Field Acoustic Measurements for Stepped Nozzles at Over- and Perfectly-Expanded Supersonic Jet Flow Conditions

机译:在超声波喷射流动条件下的阶梯喷嘴附近和远场声学测量

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摘要

Detailed near- and far-field acoustic measurements were conducted for two circular stepped nozzles with 30deg and 60deg design inclinations at over- and perfectly-expanded supersonic jet flow conditions and compared to those for a circular nonstepped nozzle. Far-field acoustic results show that stepped nozzles play an insignificant role in altering noise emissions at perfectly expanded condition. At an over-expanded condition, however, the longer stepped nozzle produces significant noise reductions at the sideline and upstream quadrants, while the shorter stepped nozzle does not. Noise spectra analysis and Schlieren visualizations show that noise reduction can be primarily attributed to mitigations in the broadband shock-associated noise (BSAN), due to the ability of the longer stepped nozzle in suppressing shock strengths at downstream region. Near-field acoustic measurements reveal that the source region, as well as the intensity of turbulent and shock noises, are highly sensitive to the stepped nozzle configuration. Furthermore, BSAN seems to be eliminated by the longer stepped nozzle in near-field region due to the shock structure modifications.
机译:详细的近近和远场测量对于两个具有30deg和60deg设计倾斜的两个圆形阶梯式喷嘴,在过度和完美的超声波喷射流动条件下,并与圆形非封口喷嘴相比。远场声学结果表明,阶梯喷嘴在改变完全扩大条件下改变噪声排放方面发挥着微不一谈的作用。然而,在过度膨胀的状态下,较长的阶梯喷嘴在侧链和上游象限处产生显着的噪声减少,而较短的阶梯喷嘴没有。噪声光谱分析和Schlieren可视化表明,由于较长的阶梯喷嘴在抑制下游区域的冲击强度时,降噪可以归因于宽带冲击相关噪声(BSAN)中的减压。近场声学测量揭示了源区,湍流和冲击噪声的强度对阶梯式喷嘴配置非常敏感。此外,由于冲击结构修改,BSAN似乎被近场区域中的较长的阶梯喷嘴消除。

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