Drag law for monodisperse gas–solid systems using particle-resolved direct numerical simulation of flow past fixed assemblies of spheres S Tenneti, R Garg, S Subramaniam International journal of multiphase flow 37 (9), 1072-1092, 2011 | 469 | 2011 |
Particle-resolved direct numerical simulation for gas-solid flow model development S Tenneti, S Subramaniam Annual review of fluid mechanics 46 (1), 199-230, 2014 | 340 | 2014 |
Modeling average gas–solid heat transfer using particle-resolved direct numerical simulation B Sun, S Tenneti, S Subramaniam International Journal of Heat and Mass Transfer 86, 898-913, 2015 | 135 | 2015 |
Enskog kinetic theory for monodisperse gas–solid flows V Garzó, S Tenneti, S Subramaniam, CM Hrenya Journal of Fluid Mechanics 712, 129-168, 2012 | 133 | 2012 |
Pseudo-turbulent gas-phase velocity fluctuations in homogeneous gas–solid flow: fixed particle assemblies and freely evolving suspensions M Mehrabadi, S Tenneti, R Garg, S Subramaniam Journal of Fluid Mechanics 770, 210-246, 2015 | 113 | 2015 |
Role of fluid heating in dense gas–solid flow as revealed by particle-resolved direct numerical simulation S Tenneti, B Sun, R Garg, S Subramaniam International Journal of Heat and Mass Transfer 58 (1-2), 471-479, 2013 | 106 | 2013 |
Direct numerical simulation of gas–solid suspensions at moderate Reynolds number: quantifying the coupling between hydrodynamic forces and particle velocity fluctuations S Tenneti, R Garg, CM Hrenya, RO Fox, S Subramaniam Powder Technology 203 (1), 57-69, 2010 | 103 | 2010 |
Pseudo-turbulent heat flux and average gas–phase conduction during gas–solid heat transfer: flow past random fixed particle assemblies B Sun, S Tenneti, S Subramaniam, DL Koch Journal of Fluid Mechanics 798, 299-349, 2016 | 62 | 2016 |
Stochastic Lagrangian model for hydrodynamic acceleration of inertial particles in gas–solid suspensions S Tenneti, M Mehrabadi, S Subramaniam Journal of Fluid Mechanics 788, 695-729, 2016 | 54 | 2016 |
Direct numerical simulation of gas-solids flow based on the immersed boundary method R Garg, S Tenneti, JM Yusof, S Subramaniam Computational gas-solids flows and reacting systems: theory, methods and …, 2011 | 45 | 2011 |
Importance of the fluid-particle drag model in predicting segregation in bidisperse gas-solid flow M Mehrabadi, S Tenneti, S Subramaniam International Journal of Multiphase Flow 86, 99-114, 2016 | 34 | 2016 |
Gas-phase velocity fluctuations in statistically homogeneous fixed particle beds and freely evolving suspensions using particle-resolved direct numerical simulation M Mehrabadi, S Tenneti, S Subramaniam review, 2012 | 3 | 2012 |
Instantaneous particle acceleration model for gas–solid suspensions at moderate Reynolds numbers S Tenneti, RO Fox, S Subramaniam 7th International Conference on Multiphase Flow, Tampa, Florida. h ttp …, 2010 | 3 | 2010 |
Mass transfer in a flow past a non-porous catalyst sphere B Sun, S Tenneti, S Subramaniam APS Division of Fluid Dynamics Meeting Abstracts, A3. 003, 2015 | | 2015 |
Modeling Two-point Particle Dynamics of Homogeneous Gas-Solid Flows to describe Clustering and Stability E Murphy, M Mehrabadi, S Tenneti, S Subramaniam APS Division of Fluid Dynamics Meeting Abstracts, R26. 002, 2015 | | 2015 |
Particle-Resolved Direct Numerical Simulation of a Particle-Laden Mixing Layer M Mehrabadi, S Tenneti, S Subramaniam APS Division of Fluid Dynamics Meeting Abstracts, M32. 005, 2013 | | 2013 |
Incorporation of Interstitial Gas Effects on Granular Flows C Hrenya, V Garzo, S Tenneti, S Subramaniam APS Division of Fluid Dynamics Meeting Abstracts, H13. 005, 2013 | | 2013 |
Role of fluctuations in instability generation in gas-solid suspensions S Subramaniam, M Mehrabadi, R Kolakaluri, S Tenneti APS Division of Fluid Dynamics Meeting Abstracts, R3. 003, 2013 | | 2013 |
Closure Models for Turbulent Particle-laden Flows from Particle-resolved Direct Numerical Simulation S Subramaniam, S Tenneti, M Mehrabadi, R Garg APS Division of Fluid Dynamics Meeting Abstracts, A19. 003, 2012 | | 2012 |
Instantaneous particle acceleration model for gas-solid suspensions at moderate Reynolds numbers S Subramaniam, R Fox | | 2010 |