Venkat Raman
Professor
Aerospace Engineering
University of Michigan
United States of America
Biography
Venkat Raman received his PhD from Iowa State University in 2003 in the department of chemical engineering. He was a NASA/Center for Turbulence Research Postdoctoral Fellow at Stanford University from 2003-2004, and a research associate in the Center for Integrated Turbulence Simulations from 2004-2005. From 2005-2014, he was on the faculty of Aerospace Engineering and Engineering Mechanics Department at The University of Texas at Austin, initially as an assistant professor (2005-2011) and later as tenured associate professor (2011-2014). Raman received an NSF CAREER award in 2008, a distinguished paper award at the International Combustion Symposium in 2013, and the Moncrief Grand Challenge Award in 2013. He held the Eli. H and Ramona Thornton Centennial Fellow in Engineering at UT Austin from 2013-2014.
Research Interest
Raman focuses on the development of computational models for turbulent reacting flows with application to aircraft and scramjet engines, stationary power generation, and synthesis of novel materials. His research group uses high-performance supercomputers and detailed numerical simulations to study the performance of combustion devices. His recent focus has been in the areas of numerical error analysis, uncertainty quantification, and failure predictions, aimed towards modeling catastrophic and rare events in complex devices and natural systems.
Publications
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Hybrid large-eddy simulation/Lagrangian filtered-density-function approach for simulating turbulent combustion V Raman, H Pitsch, RO Fox - Combustion and Flame, 2005
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201220132014201520162017 Scholar articles Large-eddy-simulation-based multiscale modeling of TiO 2 nanoparticle synthesis in a turbulent flame reactor using detailed nucleation chemistry Y Sung, V Raman, RO Fox - Chemical engineering science, 2011
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Development of a dynamic model for the subfilter scalar variance using the concept of optimal estimators G Balarac, H Pitsch, V Raman - Physics of fluids, 2008
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A consistent LES/filtered-density function formulation for the simulation of turbulent flames with detailed chemistry V Raman, H Pitsch - Proceedings of the Combustion Institute, 2007