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Characterization of Thrust and Noise of Small Turboprop and Turbojet Engines

机译:小型涡轮机和涡轮喷气发动发动机推力和噪声的特征

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The use of electric and piston-based propulsion systems has been prominent for Group III and smaller unmanned aerial vehicles (UAV) for the last two decades. Recently, small turbojet engines (10-50 1b-thrust class) have appeared on the market making their use on UAVs feasible. This can open the design space for smaller aircraft that potentially need multi-mode propulsion systems (e.g., dash capability). Although these gas turbine systems can provide the needed specific power, the resulting acoustic signature is a concern from both an annoyance and detection perspective. The purpose of this study is to examine the acoustic signature of a small turboprop engine relative to a small turbojet engine. Far field acoustic measurements of the turboprop and turbojet engines were acquired simultaneously with thrust measurements. The turboprop was run with a 2-bladed, 20-inch diameter propeller in both pusher and tractor mode. A comparison of the acoustic data at equivalent thrust levels shows that the overall sound (integrated over 20kHz) of the turbojet is approximately 17 dB higher than the turboprop in pusher configuration. However, narrowband spectral data shows that the strong propeller tones beginning at 180 Hz are comparable to the turbojet noise at that frequency. Since lower frequencies travel farther without attenuation than higher frequencies, this can impact detectability.
机译:在过去二十年中,使用电动和活塞的推进系统的使用突出了III组和较小的无人驾驶飞行器(UAV)。最近,市场上的小型涡轮喷气发动发动机(10-50个1B推子课)已经出现在市场上,使其在无人机上使用可行。这可以打开较小飞机的设计空间,可能需要多模式推进系统(例如,跳线能力)。虽然这些燃气轮机系统可以提供所需的特定功率,但是由此产生的声学签名是一种烦恼和检测视角的关注。本研究的目的是检查相对于小型涡轮喷气发动机发动机的小型涡轮机发动机的声学特征。与推力测量同时获得涡轮机和涡轮喷气发动发动机的远场声测量。在推动器和拖拉机模式下,涡轮螺旋桨用2叶片20英寸直径的螺旋桨运行。等效推力水平的声学数据的比较表明,涡轮喷气喷射器的整体声音(集成超过20kHz)比推动器配置中的涡轮螺旋桨点高约17dB。然而,窄带光谱数据表明,从180 Hz开始的强螺旋桨音调与该频率的涡轮喷气发线噪声相当。由于较低的频率远离比较高频率更高的衰减,因此可以影响可检测性。

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