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Professor Schwartzentruber utilizes particle simulation methods to model non-equilibrium and chemically reacting gas flows. Non-equilibrium flow occurs when the mean-free-path between molecular collisions in a gas is no longer negligible compared to length-scales of interest. Applications include high-altitude hypersonic aerothermodynamics, rocket-plume flows, gas-surface interactions, and at the other end of the scale, micro-electromechanical devices. Professor Schwartzentruber's research focuses on continued algorithm development of the direct simulation Monte Carlo (DSMC) particle method. Research also focuses on molecular dynamics (MD) simulation in order to further develop gas-phase and gas-surface models used in DSMC. Finally, special focus is given to the development of multi-scale methods that combine both particle and continuum approaches to accurately and efficiently simulate non-equilibrium flows.
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AIAA JOURNALno. 2 (2024): 460-475
Austin Andrews,Devin McGee,Ioannis Pothos, Nathan Bellefeuille,Christopher J. Hogan,Thomas E. Schwartzentruber
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