Scherebnyj Katrina, Hodgson Murray
Acoustics and Noise Research Group, MECH-SOEH, 3rd Floor, 2206 East Mall, Vancouver, British Columbia V6T 1Z3, Canada.
J Acoust Soc Am. 2007 Oct;122(4):1937-45. doi: 10.1121/1.2769988.
Annoyance complaints resulting from engine run-ups have been increasing at Vancouver International Airport for several years. To assist the Airport in managing run-up noise levels, a prediction tool based on a Green's function parabolic equation (GFPE) model has been consolidated, evaluated, and applied. It was extended to include more realistic atmospheric and ground input parameters. Measurements were made of the noise-radiation characteristics of a CRJ200 jet aircraft. The GFPE model was validated by comparing predictions with results in the literature. A sensitivity analysis showed that predicted levels are relatively insensitive to small variations in geometry and ground impedance, but relatively sensitive to variations in wind speed, atmosphere type, and aircraft heading and power setting. Predicted noise levels were compared with levels measured at noise monitoring terminals. For the four cases for which all input information was available, agreement was within 10 dBA. For events for which some information had to be estimated, predictions were within 20 dBA. The predicted annoyance corresponding to the run-up events considered ranged from 1.8% to 9.5% of people awoken, suggesting that noise complaints can be expected.
多年来,温哥华国际机场因发动机暖机引发的烦恼投诉一直在增加。为协助机场管理暖机噪音水平,一个基于格林函数抛物方程(GFPE)模型的预测工具已得到整合、评估和应用。该工具已扩展到包括更现实的大气和地面输入参数。对一架CRJ200喷气式飞机的噪声辐射特性进行了测量。通过将预测结果与文献中的结果进行比较,对GFPE模型进行了验证。敏感性分析表明,预测水平对几何形状和地面阻抗的小变化相对不敏感,但对风速、大气类型、飞机航向和功率设置的变化相对敏感。将预测的噪声水平与在噪声监测终端测量的水平进行了比较。对于所有输入信息都可用的四个案例,两者的差值在10分贝以内。对于一些信息必须进行估算的情况,预测值在20分贝以内。与所考虑的暖机事件相对应的预测烦恼程度为被吵醒人群的1.8%至9.5%,这表明可能会出现噪音投诉。