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Effects of Vehicle Weight and True Versus Indicated Airspeed on BVI Noise During Steady Descending Flight

机译:稳定降落过程中车辆重量和真实对空速对英属维尔京群岛噪声的影响

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Blade-vortex interaction noise measurements are analyzed for an AS350B helicopter operated at 7000 ft elevation above sea level. Blade-vortex interaction (BVI) noise from four, 6 degree descent conditions are investigated with descents flown at 80 knot true and indicated airspeed, as well as 4400 and 3915 pound take-off weights. BVI noise is extracted from the acquired acoustic signals by way of a previously developed time-frequency analysis technique. The BVI extraction technique is shown to provide a better localization of BVI noise, compared to the standard Fourier transform integration method. Using this technique, it was discovered that large changes in BVI noise amplitude occurred due to changes in vehicle gross weight. Changes in BVI noise amplitude were too large to be due solely to changes in the vortex strength caused by varying vehicle weight. Instead, it is suggested that vehicle weight modifies the tip-path-plane angle of attack, as well as induced inflow, resulting in large variations of BVI noise. It was also shown that defining flight conditions by true airspeed, rather than indicated airspeed, provides more consistent BVI noise signals.
机译:针对在海拔7000英尺高空运行的AS350B直升机,分析了叶片涡旋相互作用的噪声测量结果。研究了在4、6度下降条件下的叶片-涡旋相互作用(BVI)噪声,以80节的真实和指示的空速以及4400和3915磅的起飞重量飞行下降。通过先前开发的时频分析技术,从采集的声学信号中提取出BVI噪声。与标准的傅立叶变换积分方法相比,BVI提取技术显示出对BVI噪声的更好定位。使用这种技术,发现由于车辆总重的变化,BVI噪声幅度发生了很大的变化。英属维尔京群岛噪声幅度的变化太大,不能仅归因于车辆重量的变化引起的涡流强度的变化。取而代之的是,建议车辆的重量改变尖端路径平面的迎角,以及引起的流入,从而导致BVI噪声的较大变化。还显示出,通过真实的空速而不是指示的空速来定义飞行条件会提供更一致的BVI噪声信号。

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