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Wind tunnel measurements of the surface pressure fluctuations on the new VEGA-C space launcher

机译:新型VEGA-C空间发射器的风洞测量表面压力波动

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摘要

An extensive wind tunnel test campaign devoted to the characterization of the aerodynamic and aeroacoustic behaviour of the new Space Launcher VEGA-C has been carried out in the trisonic wind tunnel available at the National Institute for Aerospace Research (INCAS) in Bucharest. The present paper summarizes the main results of the aeroacoustic investigation with a specific focus on the buffeting analysis. For this reason, the results presented herein are limited to the transonic conditions which are the most critical in terms of occurrence of flow instabilities. The scaled instrumented model of the VEGA-C launcher has been equipped with flush mounted Kulite sensors that provided the distribution of the wall pressure fluctuations. Pressure measurements at the wall of the wind tunnel have been carried out as well, with the scope of measuring reference signals to be used for cleaning the model pressure data from the background noise. Numerical simulations have been also performed to facilitate the physical interpretation of the experimental outcomes by qualitatively identifying the position of the shockwaves and tracking their evolution along the launcher for increasing Mach number. Data processing provides temporal statistics of the wall pressure signals as well as spectral quantities that give clear indications about the absence of buffeting. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:在布加勒斯特国家航空航天研究所(INCAS)的三速风洞中进行了广泛的风洞试验活动,致力于表征新型Space Launcher VEGA-C的空气动力学和空气声学特性。本文总结了航空声学研究的主要结果,特别侧重于抖振分析。由于这个原因,本文提出的结果仅限于跨音速条件,这在发生流动不稳定性方面是最关键的。 VEGA-C发射器的比例仪表型号配备了齐平安装的Kulite传感器,可提供壁面压力波动的分布。还已经进行了风洞壁处的压力测量,测量的参考信号范围用于从背景噪声中清除模型压力数据。通过定性确定冲击波的位置并跟踪其沿发射器的演变以增加马赫数,还进行了数值模拟,以方便对实验结果进行物理解释。数据处理可提供壁压力信号的时间统计数据以及频谱量,这些数据可以清楚地表明是否存在抖振。 (C)2020 Elsevier Masson SAS。版权所有。

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