航空学报 > 2025, Vol. 46 Issue (20): 331957-331957   doi: 10.7527/S1000-6893.2025.31957

超声速民机关键技术专刊

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矢量风对飞机噪声足迹图的影响

洪志亮1, 谢博思1, 张家齐1, 王萌2, 陈凌峰1()   

  1. 1.中国民航大学 安全科学与工程学院,天津 300300
    2.中国航发沈阳发动机研究所,沈阳 110015
  • 收稿日期:2025-03-10 修回日期:2025-04-06 接受日期:2025-05-06 出版日期:2025-05-20 发布日期:2025-05-19
  • 通讯作者: 陈凌峰 E-mail:lfchen@cauc.edu.cn
  • 基金资助:
    国家自然科学基金(52276045);国家科技重大专项(J2019-VIII-0014-0175);中央高校基本科研业务费专项资金(3122021087)

Effect of vector wind on aircraft noise footprints

Zhiliang HONG1, Bosi XIE1, Jiaqi ZHANG1, Meng WANG2, Lingfeng CHEN1()   

  1. 1.College of Safety Science and Engineering,Civil Aviation University of China,Tianjin 300300,China
    2.AECC Shenyang Engine Research Institute,Shenyang 110015,China
  • Received:2025-03-10 Revised:2025-04-06 Accepted:2025-05-06 Online:2025-05-20 Published:2025-05-19
  • Contact: Lingfeng CHEN E-mail:lfchen@cauc.edu.cn
  • Supported by:
    National Natural Science Foundation of China(52276045);National Science and Technology Major Project of China(J2019-VIII-0014-0175);Fundamental Research Funds for the Central Universities(3122021087)

摘要:

噪声足迹图是评估飞机对机场周边社区影响的重要手段。然而目前常用的噪声-推力-距离(NPD)经验公式方法在评估单次飞行事件时,无法考虑矢量风对噪声足迹图的影响,在实际应用中具有明显的局限性。为解决上述难题,在基于声线法的非均匀大气声传播预测模型的基础上,考虑了地面反射效应和近地风梯度对声传播的折射作用,实现了对不同风向下横向衰减的预测,最终建立了考虑矢量风工况的噪声足迹图预测方法。经模型验证,采用所提方法获得的结果与文献中的试验数据具有良好的一致性,并且相较于常用的网格方法在计算效率方面有显著提升。研究结果表明,与无风工况相比,矢量风对声传播的横向衰减效应具有显著影响,这导致了噪声足迹图在滑跑和初始爬升阶段呈现明显的不对称性。所提模型可作为准确评估不同气象条件下飞机噪声对临近社区的影响及规划机场周边土地使用的有效工具。

关键词: 矢量风, 噪声足迹图, 横向衰减, 声线法, 大气折射效应

Abstract:

Noise footprints are essential tools for assessing the impact of aircraft noise on communities surrounding airports. However, the widely used Noise-Power-Distance (NPD) empirical formula fails to account for the influence of vector winds on noise footprints during individual flight events, limiting its practical applicability. To address this challenge, a predictive model for noise footprints under vector wind conditions is developed, based on a ray-tracing model for non-uniform atmospheric sound propagation. This model incorporates ground reflection effects and the refractive influence of near-surface wind gradients on noise propagation, enabling accurate predictions of lateral attenuation across different wind directions. Model validation demonstrates strong agreement with experimental data from the literature, while showing significant improvements in computational efficiency compared to traditional grid-based methods. Research findings indicate that vector wind conditions significantly alter the lateral attenuation effect of sound propagation, compared to windless conditions, leading to pronounced asymmetry in noise contours during aircraft taxiing and initial climb phases. The proposed model can become an effective tool for enhancing the accuracy of noise impact assessments for nearby communities and planning land-use around airports under varying meteorological conditions.

Key words: vector wind, noise footprint, lateral attenuation, ray-tracing model, atmospheric refraction effect

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