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Flight Demonstration Of Low Overpressure N-Wave Sonic Booms And Evanescent Waves

机译:低超压N波声波臂和E逝波的飞行演示

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摘要

The recent flight demonstration of shaped sonic booms shows the potential for quiet overland supersonic flight, which could revolutionize air transport. To successfully design quiet supersonic aircraft, the upper limit of an acceptable noise level must be determined through quantitative recording and subjective human response measurements. Past efforts have concentrated on the use of sonic boom simulators to assess human response, but simulators often cannot reproduce a realistic sonic boom sound. Until now, molecular relaxation effects on low overpressure rise time had never been compared with flight data. Supersonic flight slower than the cutoff Mach number, which generates evanescent waves, also prevents loud sonic booms from impacting the ground. The loudness of these evanescent waves can be computed, but flight measurement validation is needed. A novel flight demonstration technique that generates low overpressure N-waves using conventional military aircraft is outlined, in addition to initial quantitative flight data. As part of this demonstration, evanescent waves also will be recorded.
机译:最近的异型声波吊杆飞行演示显示了安静的陆上超音速飞行的潜力,这可能会改变航空运输方式。为了成功设计安静的超音速飞机,必须通过定量记录和主观人类响应测量来确定可接受的噪声水平的上限。过去的工作集中在使用声波臂模拟器来评估人类的反应,但是模拟器通常无法重现逼真的声波臂声音。到目前为止,从未将分子弛豫对低超压上升时间的影响与飞行数据进行比较。超音速飞行的速度比截止马赫数慢,后者会产生e逝波,还可以防止大声的声波轰击地面。可以计算这些e逝波的响度,但需要进行飞行测量验证。除了最初的定量飞行数据外,还概述了使用常规军用飞机产生低超压N波的新型飞行演示技术。作为此演示的一部分,还将记录e逝波。

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