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His research was mainly about developing numerical algorithms to solve the compressible Navier-Stokes equations for reactive flow with applications to studies of thermoacoustic instabilities
His research dealt with probability density function (PDF) modeling of turbulent reactive flow. The time was primarily spent to develop a new hybrid Monte Carlo/finite-volume algorithm for solving the fully joint velocity-frequency-composition PDF transport equation for turbulent reactive flow
He worked on the company's next generation oil reservoir simulator project and his main responsibilities included discretization issues, muli-scale modeling and PDF modeling for uncertainty assessment in oil reservoir simulation
His research dealt with probability density function (PDF) modeling of turbulent reactive flow. The time was primarily spent to develop a new hybrid Monte Carlo/finite-volume algorithm for solving the fully joint velocity-frequency-composition PDF transport equation for turbulent reactive flow
He worked on the company's next generation oil reservoir simulator project and his main responsibilities included discretization issues, muli-scale modeling and PDF modeling for uncertainty assessment in oil reservoir simulation
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PHYSICS OF FLUIDSno. 1 (2024)
crossref(2024)
Computer Methods in Applied Mechanics and Engineering (2024): 117052
Computer Methods in Applied Mechanics and Engineering (2023): 117026
Physics of Fluidsno. 10 (2023)
ATMOSPHEREno. 3 (2023): 558-558
Zenodo (CERN European Organization for Nuclear Research) (2023)
J. Comput. Phys. (2023): 112404-112404
Authorea (Authorea) (2023)
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