Philippe Blanc-Benon
Researcher
Lyon College
faculty
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Biography and Research Information
OverviewAI-generated summary
Philippe Blanc-Benon is a faculty member at Lyon College whose research encompasses a diverse range of wave phenomena, from underwater acoustics to atmospheric propagation. His work addresses both fundamental aspects of acoustic wave behavior and applied problems in aerodynamics. Recent studies include numerical predictions of sonic boom variability caused by atmospheric turbulence and characterization of topographic effects on sonic boom reflection. Blanc-Benon's research also explores the dynamics of interacting acoustic bubbles and microstreaming patterns induced by oscillating bubbles. His primary research interests lie in underwater acoustics, acoustic wave phenomena, seismic wave analysis, aerodynamics and acoustics in jet flows, and wind/air flow studies.
Metrics
- h-index: 24
- Publications: 223
- Citations: 1,516
Selected Publications
- Heuristic solution for the acoustic radiation of a moving monopole in an inhomogeneous and moving atmosphere. Application to aircraft noise (2024) DOI
- Discussion of sound propagation through the turbulent Martian atmosphere and implications for inference of turbulence spectra (2024) DOI
- Acoustical Propagation of Weak Shockwaves Into a Shadow Zone With Turbulence: Laboratory-Scale Experiment (2024) DOI
- Comment on wes-2024-36 (2024) DOI
- Phenomenon of self-oscillation in bubble dynamics: Bouncing acoustic bubbles (2024) DOI
- Phenomenon of self-oscillation in bubble dynamics: Bouncing acoustic bubbles (2024) DOI
- Impact of a Two-Dimensional Steep Hill on Wind Turbine Noise Propagation (2024) DOI
- Sound pressure radiated by a point-source in arbitrary motion above an absorbing ground: Application to aircraft noise (2024) DOI
- Investigating the Impact of Atmospheric Boundary Layer Stratification on Wind Farm Noise Propagation (2024) DOI
- An acoustic investigation of the near-surface turbulence on Mars (2024) DOI
- Suivi lagrangien par holographie numérique en ligne de bulles piégées par un champ ultrasonore (2023)
- Wind turbine sound propagation: Comparison of a linearized Euler equations model with parabolic equation methods (2023) DOI
- Self-Propulsion of Two Contacting Bubbles Due to the Radiation Interaction Force (2023) DOI
- Sonic boom propagation over real topography (2023) DOI
- Acoustic recording of near-surface turbulence on Mars (2023) DOI
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