معرفی
Éric Lunéville is a Researcher in Applied Mathematics at ENSTA Paris, where he is affiliated with the Applied Mathematics Unit (UMA) and the Wave Propagation, Mathematical Study and Simulation (POEMS) research group. His work focuses on mathematical modeling and numerical simulation of wave phenomena, particularly in the context of acoustics and waveguides.
Dr. Lunéville's research interests span wave propagation theory, mathematical simulation techniques, aeroacoustics, waveguide analysis, acoustic multicasting, optimization methods, inverse problems, and numerical approaches for high-frequency diffraction. His work demonstrates a strong connection between theoretical mathematics and practical engineering applications, particularly in the field of acoustics.
Analysis of his publication record reveals a consistent focus on waveguide theory and numerical simulation methods. His research shows progression from fundamental mathematical modeling of wave phenomena to practical software implementations like the XLiFE++ library. A significant portion of his work addresses inverse problems in wave propagation, particularly related to crack detection and non-scattering phenomena in waveguides. His research also demonstrates expertise in developing transparent boundary conditions and multimodal approaches for complex waveguide configurations.
- Knight of the Order of Academic Palms
Dr. Lunéville has made substantial collaborative contributions to wave propagation research, working with prominent researchers including Anne-Sophie Bonnet-Ben Dhia, Laurent Bourgeois, and Jean-François Mercier. His development of the XLiFE++ software library represents a significant bridge between theoretical mathematics and practical computational tools for engineers and scientists working in wave propagation and related fields.
As part of the POEMS research group at ENSTA Paris, Dr. Lunéville contributes to a collaborative environment focused on mathematical wave propagation studies with applications across multiple disciplines including acoustics, structural mechanics, and non-destructive testing. His work supports broader institutional research goals in sustainable energy, transportation, and defense sectors through advanced mathematical modeling and simulation techniques.



