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Microphone Phased Array to Identify Liftoff Noise Sources in Model-Scale Tests

机译:麦克风相控阵可在模型规模测试中识别提离噪声源

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摘要

A 70-microphone phased array, protected to withstand the harsh environment of a rocket test facility, was used to identify noise sources in the Ares I Scale Model Acoustics Test In the unobstructed burn of a single solid rocket motor, the free-flowing plume itself was found to make a long noise source. The scenario changed completely in launch configurations where a 5%-scale model of the Ares I vehicle was tested in static firings. It was found that the impingement by the plume on various regions of the launch pad constituted the primary noise sources. The scenario is very different from current models, which assume that the plume itself is the noise source and do not account for impingement sources. As expected, the addition of water in the trench and the hole for the plume passage attenuated the associated noise sources. Water injection on the top of the pad ("rainbird") was found to attenuate only the peripheral sources around the primary plume impingement zone. The noise maps suggest that the minimization of impingement by reducing vehicle drift, reducing plume spillage via increasing the size of the hole, and covering-up leakage paths for the sound waves from the trench will attenuate the liftoff acoustics level.
机译:在战神一号比例模型声学测试中,使用了一个70麦克风相控阵进行保护,可以抵御火箭测试设备的恶劣环境,用于识别噪声源。在单个固体火箭发动机的无障碍燃烧中,自由流动的烟羽本身被发现会产生长噪声源。该场景在发射配置中完全改变,其中在静态射击中测试了5%比例的Ares I车辆模型。已经发现,羽流撞击发射台的各个区域构成了主要的噪声源。该方案与当前模型有很大不同,当前模型假定羽流本身是噪声源,而不考虑撞击源。如预期的那样,在沟槽和羽流通道的孔中添加水会削弱相关的噪声源。发现在护垫(“雨鸟”)顶部注水只会减弱主要羽流撞击区周围的外围水源。噪声图表明,通过减少车辆漂移,通过增加孔的大小来减少羽流溢出以及将来自沟槽的声波的泄漏路径掩盖起来,可以将撞击声降到最低,从而降低升空声级。

著录项

  • 来源
    《Journal of Spacecraft and Rockets》 |2013年第5期|1002-1012|共11页
  • 作者

    J. Panda; R. Mosher;

  • 作者单位

    NASA Ames Research Center, Moffett Field, California 94035,Experimental Aero-Physics Branch;

    Aerospace Computing, Inc., Mountain View, California 94043 ,Experimental Aero-Physics Branch;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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