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Tejas Pant
Tejas Pant
Director of AI Research, Accrete AI
Verified email at alumni.purdue.edu - Homepage
Title
Cited by
Cited by
Year
LES/PDF modeling of turbulent premixed flames with locally enhanced mixing by reaction
H Wang, T Pant, P Zhang
Flow, Turbulence and Combustion 100, 147-175, 2018
302018
Examination of errors of table integration in flamelet/progress variable modeling of a turbulent non-premixed jet flame
T Pant, C Han, H Wang
Applied Mathematical Modelling 72, 369-384, 2019
252019
Computational investigations of the coupling between transient flame dynamics and thermo-acoustic instability in a self-excited resonance combustor
T Pant, C Han, H Wang
Combustion Theory and Modeling, 2019
152019
Consistency and convergence of Eulerian Monte Carlo field method for solving transported probability density function equation in turbulence modeling
H Wang, P Zhang, T Pant
Physics of Fluids 30 (11), 2018
152018
Flamelet modeling studies of a continuously variable resonance combustor
T Pant, C Huang, C Han, SV Sardeshmukh, WE Anderson, H Wang
54th AIAA Aerospace Sciences Meeting, 1941, 2016
82016
Transported PDF modeling of compressible turbulent reactive flows by using the Eulerian Monte Carlo fields method
T Pant, U Jain, H Wang
Journal of Computational Physics 425, 109899, 2021
62021
Flamelet modeling of transverse thermo-acoustic instability in a multi-element combustor
T Pant, H Wang
AIAA Scitech 2019 Forum, 1235, 2019
62019
Consistent modeling of differential molecular diffusion to yield desired Reynolds-number power-law scaling
C Han, T Pant, U Jain, H Wang
Physics of Fluids 30 (8), 2018
52018
Transported pdf modeling of thermo-acoustic instability in a self-excited model rocket combustor using eulerian monte carlo fields method
T Pant, H Wang
AIAA Scitech 2019 Forum, 1496, 2019
22019
Study of a generalized empirical model for predicting pressure drop for internal flows
TA Pant
Purdue University, 2014
12014
Numerical Modeling of Thermo-Acoustic Instability in a Self-Excited Resonance Combustor Using Flamelet Modeling Approach and Transported Probability Density Function Method
T Pant
Purdue University, 2019
2019
An Empirical Model Relating Pressure Drop and Mass Flow Rate in General Internal Flows: Theoretical Basis and Sensitivity Analysis
T Pant, H Wang
Journal of Applied Fluid Mechanics 11 (2), 419-432, 2018
2018
Combustion Dynamics of Combustion Instabilities in a Self-Excited Resonance Combustor
T Pant, H Wang
SIAM, 9th Computational Science and Engineering Student Conference, 2017
2017
Effect of numerical approaches for flamelet table integration on flamelet modeling of a turbulent jet flame and a self-excited resonance combustor
C Han, T Pant, H Wang
10th U.S. National Combustion Meeting, 2017
2017
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