...
首页> 外文期刊>Acustica >Aircraft sound propagation near to the ground: Measurements and calculations
【24h】

Aircraft sound propagation near to the ground: Measurements and calculations

机译:飞机声音在地面附近的传播:测量和计算

获取原文
获取原文并翻译 | 示例

摘要

In the framework of acoustic and seismic monitoring of airports for verifying disarmament or peace-keeping agreements the propagation of sound emitted by aircraft close to the ground was investigated. The ground effect due to the porous, grass-covered ground is maximum at around 100 Hz to 200 Hz. The attenuation reaches up to c. 20 dB for a distance of 100 m. In addition, the microphones located close to the ground (h = 0.3 m) show a significant attenuation over a large frequency range above 200 Hz. By means of an experimentally determined surface impedance propagation calculations were carried out. Transfer functions were calculated which show the frequency dependent attenuation due to the porous ground for a given geometry. Using reference signals measured close to the sound source spectra were calculated corresponding to locations of microphones above the grass-covered ground. The calculated spectra were compared with the measured ones. In the case of transfer function measurements with white noise over a range of 20 m, the calculated spectra agree very well with the actually measured ones. In the case of the jet aircraft, the simulated spectra fit to those of the measured signals only in general appearance of amplitude, and not in phase. This is probably mainly due to an inaccurate localisation of the sound source, its extension, and directivity. [References: 24]
机译:在为核查裁军或维持和平协定而对机场进行声学和地震监测的框架内,对飞机靠近地面发射的声音的传播进行了调查。多孔的,草皮覆盖的地面对地面的影响最大,约为100 Hz至200 Hz。衰减高达c。对于100 m的距离为20 dB。此外,靠近地面(h = 0.3 m)的麦克风在200 Hz以上的较大频率范围内显示出明显的衰减。借助于实验确定的表面阻抗,进行了传播计算。计算了传递函数,该函数显示了对于给定几何形状,由于多孔地面导致的频率相关衰减。使用测得的接近声源频谱的参考信号,计算得出的信号对应于草皮地面上方麦克风的位置。将计算的光谱与测量的光谱进行比较。对于在20 m范围内具有白噪声的传递函数测量,所计算的光谱与实际测量的光谱非常吻合。在喷气飞机的情况下,模拟频谱仅在幅度的总体外观而不在相位上适合于被测信号的频谱。这可能主要是由于声源的定位不准确,其扩展和方向性所致。 [参考:24]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号