Stephane Moreau

About Stephane Moreau

Stephane Moreau, With an exceptional h-index of 44 and a recent h-index of 35 (since 2020), a distinguished researcher at Université de Sherbrooke, specializes in the field of aéroacoustique, turbomachine, bruit.

His recent articles reflect a diverse array of research interests and contributions to the field:

Turbomachinery Noise Review

A 3D frequency domain finite element formulation for solving the wave equation in the presence of rotating obstacles

Understanding tip leakage noise

Optimised discharge line grid and optimized discharge valve

Experimental and numerical observation of flow-acoustics feedback phenomena due to two diaphragms in tandem inserted in a rectangular duct

Multispecies flow indirect-noise modeling re-examined with a helicopter-engine application

Wall-Pressure Spectrum Model Based on Artificial Neural Networks Predictions

Aeroacoustic investigation of airfoil at near-stall conditions

Stephane Moreau Information

University

Position

Professeur Titulaire

Citations(all)

9058

Citations(since 2020)

4938

Cited By

5735

hIndex(all)

44

hIndex(since 2020)

35

i10Index(all)

221

i10Index(since 2020)

139

Email

University Profile Page

Google Scholar

Stephane Moreau Skills & Research Interests

aéroacoustique

turbomachine

bruit

Top articles of Stephane Moreau

Turbomachinery Noise Review

2024/3/13

A 3D frequency domain finite element formulation for solving the wave equation in the presence of rotating obstacles

Journal of Sound and Vibration

2024/2/17

Understanding tip leakage noise

arXiv preprint arXiv:2401.15227

2024/1/26

Prateek Jaiswal
Prateek Jaiswal

H-Index: 2

Stephane Moreau
Stephane Moreau

H-Index: 29

Optimised discharge line grid and optimized discharge valve

2024/1/16

Experimental and numerical observation of flow-acoustics feedback phenomena due to two diaphragms in tandem inserted in a rectangular duct

Acta Acustica

2024

Multispecies flow indirect-noise modeling re-examined with a helicopter-engine application

AIAA Journal

2024/1

Wall-Pressure Spectrum Model Based on Artificial Neural Networks Predictions

Canadian Acoustics

2023/10/9

Aeroacoustic investigation of airfoil at near-stall conditions

Physics of Fluids

2023/9/1

Acoustically optimized discharge line grid with channels

2023/7/25

On the effect of adverse pressure gradients on wall-pressure statistics in a controlled-diffusion aerofoil turbulent boundary layer

Journal of Fluid Mechanics

2023/4

H-Darrieus vertical axis wind turbine aerodynamics and aeroacoustics under different inflow conditions

2023/3/6

Numerical investigation of h-Darrieus wind turbine aerodynamics at different tip speed ratios

International Journal of Numerical Methods for Heat & Fluid Flow

2023/3/2

Analysis of Upstream Turbulence Impact on Wall Heat Transfer in an Acoustic Liner with Large-Eddy Simulations

Applied Sciences

2023/2/28

Effect of porosity on Curle’s dipolar sources on an aerofoil in turbulent flow

Journal of Sound and Vibration

2023/1/6

Controlled Diffusion airfoil self-noise, an acoustic far-field prediction

2023

Computational Aeroacoustic Predictions of the 30P30N High-Lift Airfoil

2023

Aeroacoustic characterization of the 30P30N high-lift airfoil

2023

Correcting the Prediction of Noise Scattering at Sharp Edges for a Spatio-Temporal Deep Learned Acoustic Surrogate

2023

Large Eddy Simulation and Noise Prediction of a Supercritical Airfoil at Moderate Angle of Attack

2023

Aerodynamic and Sound-Scattering Effects in Rotor-Strut Interaction Noise of Small-Size Drones

2023

Stephane Moreau
Stephane Moreau

H-Index: 29

See List of Professors in Stephane Moreau University(Université de Sherbrooke)