works on

From the 1 of 4 linked papers with an AI index.

collaborators

4 papers

physics.flu-dyn2026

A Thermodynamically Consistent Manifold Model for Premixed Deflagrations & Detonations

John B. Boerchers, Laura T. Thompson, Matthew X. Yao +1

The paper presents a manifold-based turbulent combustion model that maintains thermodynamic consistency for simulating compressible premixed flames, covering both deflagrations and…

physics.ao-ph2026

Observations and empirical functions for the ocean surface wave spectrum

Hannah Hata Williams, Michael E. Mueller, Luc Deike

Accurate parameterizations of ocean wave spectra are necessary in a wide array of disciplines including coastal, ocean, and naval engineering as well as in the study of wave intera…

physics.flu-dyn2026

Sea Surface Roughness Dependence on Ocean Wave Parameters through Large Eddy Simulation with Local Subfilter Wave Drag

Hannah Hata Williams, Aditya K. Aiyer, Luc Deike +1

Characterizing the Marine Atmospheric Boundary Layer (MABL) requires understanding the coupling between ocean waves and the turbulent atmospheric boundary layer above them. This co…

physics.comp-ph2026

Neural-ISAM: A hybrid in-situ machine learning approach for complex manifold-based combustion models in LES of turbulent flames

S. Trevor Fush, Israel J. Bonilla, Michael B. Schroeder +2

Manifold-based combustion models decrease the cost of turbulent combustion simulations by projecting the thermochemical state onto a lower-dimensional manifold, allowing the thermo…