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Acoustic Measurements of a Large Civil Transport Main Landing Gear Model

机译:大型民用运输主着陆齿轮模型的声学测量

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摘要

Microphone phased array acoustic measurements of a 26 percent-scale, Boeing 777-200 main landing gear model with and without noise reduction fairings installed were obtained in the anechoic configuration of the Virginia Tech Stability Tunnel. Data were acquired at Mach numbers of 0.12, 0.15, and 0.17 with the latter speed used as the nominal test condition. The fully and partially dressed gear with the truck angle set at 13 degrees toe-up landing configuration were the two most extensively tested configurations, serving as the baselines for comparison purposes. Acoustic measurements were also acquired for the same two baseline configurations with the truck angle set at 0 degrees. In addition, a previously tested noise reducing, toboggan-shaped fairing was re-evaluated extensively to address some of the lingering questions regarding the extent of acoustic benefit achievable with this device. The integrated spectra generated from the acoustic source maps reconfirm, in general terms, the previously reported noise reduction performance of the toboggan fairing as installed on an isolated gear. With the recent improvements to the Virginia Tech tunnel acoustic quality and microphone array capabilities, the present measurements provide an additional, higher quality database to the acoustic information available for this gear model.
机译:麦克风分阶段阵列声学测量值为26%级,波音777-200主着陆齿轮模型,在弗吉尼亚州科技稳定隧道的解剖结构中获得了且没有降噪公平。在0.12,0.15和0.17的马赫数中获得数据,后者用作标称试验条件。具有卡车角度的完全和部分穿着的齿轮设定为13度Toe-Up Landing配置,是两种最广泛的测试配置,用作用于比较目的的基线。还与卡车角度设定为0度的卡车角度的相同两个基线配置获得声学测量。此外,先前测试的降噪,雪橇形整流罩被广泛评估,以解决有关该装置可实现的声学益处的一些挥之不去的问题。从声学源图产生的集成光谱,一般来说,以一般的术语重新确认,先前报告的Toboggan整体的降噪性能,如孤立的档位上安装。随着近期对弗吉尼亚技术隧道声学质量和麦克风阵列能力的改进,目前的测量为该档位提供了一种额外的更高质量的数据库,可以提供给该档位的声学信息。

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