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September 16, 20250 citations

Investigating and quantifying ground effect using spectrograms of realistic aircraft flyover measurements

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AJAnandini Sravya JayanthiMSMirjam SnellenAAAlireza Amiri-Simkooei

Key Points

  • Ground effect noise reductions of up to 2.3 dBA were observed for higher elevation angles.
  • A semi-synthetic spectrogram was generated using an acoustic array to analyze aircraft flyovers.
  • Single microphone measurements were corrected for ground effect to enhance agreement with array data.
  • This methodology contrasts with traditional noise modeling approaches, revealing key differences in attenuation.

Abstract

Abstract par This paper proposes a measurement-based methodology for investigating the ground effect observed in real-life aircraft flyover measurements in low-noise regions. An acoustic array is used for obtaining a spectrogram of the sound with ground reflections to a large extent eliminated. By applying a model to account for the ground effect, a semi-synthetic spectrogram is obtained. This spectrogram is then qualitatively compared with the spectrogram obtained from single microphone measurements at two heights to verify whether indeed the semi-synthetic spectrogram agrees with those measured by the single microphones. As a next step, the ground effect for the fly-overs measured is quantified by using the array-recorded signals together with the model for the ground effect for all flyovers. By correcting the single microphone signals for the estimated ground effect improved agreement improved agreement between noise levels at both receiver heights and the array measurements is obtained. For flyovers with higher elevation angles, a greater reduction in noise, up to 2. 3 dBA, is observed, despite the larger slant distances. In contrast, flyovers at lower elevation angles show a smaller reduction of approximately 1. 8 dBA. This contrasts with the common corrections applied for lateral attenuation in best-practice modelling where the attenuation (accounting for more than only the ground effect) diminishes at higher elevation angles.

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Cite This Study

Jayanthi et al. (2025) studied this question.

synapsesocial.com/papers/68d4565431b076d99fa5b01ehttps://doi.org/10.21203/rs.3.rs-7291796/v1
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