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SCAMP: Rapid Focused Sonic Boom Waypoint Flight Planning Methods, Execution, and Results

机译:Scamp:快速聚焦的Sonic Boom Waypoint飞行计划方法,执行和结果

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Successful execution of the flight phase of the Superboom Caustic Analysis and Measurement Project (SCAMP) required accurate placement of focused sonic booms on an array of prepositioned ground sensors. While the array was spread over a 10,000-ft-long area, this is a relatively small region when considering the speed of a supersonic aircraft and sonic boom ray path variability due to shifting atmospheric conditions and aircraft trajectories. Another requirement of the project was to determine the proper position for a microphone-equipped motorized glider to intercept the sonic boom caustic, adding critical timing to the constraints. Variability in several inputs to these calculations caused some shifts of the focus away from the optimal location. Reports of the sonic booms heard by persons positioned amongst the array were used to shift the focus closer to the optimal location for subsequent passes. This paper describes the methods and computations used to place the focused sonic boom on the SCAMP array and gives recommendations for their accurate placement by future quiet supersonic aircraft. For the SCAMP flights, 67% of the foci were placed on the ground array with measured positions within a few thousand feet of computed positions. Among those foci with large caustic elevation angles, 96% of foci were placed on the array, and measured positions were within a few hundred feet of computed positions. The motorized glider captured sonic booms on 59% of the passes when the instrumentation was operating properly.
机译:成功执行超级腐蚀性分析和测量项目(Scamp)的飞行阶段(Scamp)所需的精确放置在预先定位的地面传感器阵列上的聚焦声波。虽然阵列在10,000英尺长的区域上传播,但考虑到超音速飞机和Sonic Boom射线路径可变性的速度,这是一个相对较小的区域,因为由于变化的大气条件和飞机轨迹。该项目的另一个要求是确定配备麦克风的电动滑翔机的适当位置,以拦截Sonic Boom腐蚀性,为约束增加了关键时机。对这些计算的几个输入中的可变性导致远离最佳位置的一些转变。被定位在阵列中的人员听说过的声音臂的报告用于将重点移到后续通过的最佳位置。本文介绍了用于将聚焦的Sonic Boom放置在散步阵列上的方法和计算,并通过未来的静音超音速飞机提出了准确放置的建议。对于疏水飞行,将67%的焦点放置在地面阵列上,测量位置在计算位置几英尺处。在具有大腐蚀性升高角度的焦点中,将96%的焦点放置在阵列上,测量位置在几百英尺的计算位置。当仪器正常运行时,电动滑翔机在59%的通过时捕获了Sonic Booms。

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