2 citations · 4 across the 5 of their papers we have counts for
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Pore-resolved simulations of turbulent boundary layer flow over permeable and impermeable sediment beds
Shashank K. Karra, Sourabh V. Apte, Xiaoliang He +1
Pore-resolved direct numerical simulations of turbulent open channel flow are performed comparing the structure and dynamics of turbulence over impermeable rough and smooth walls t…
A disturbance corrected point-particle approach for two-way coupled particle-laden flows on arbitrary shaped grids
Pedram Pakseresht, Sourabh V. Apte
A general, two-way coupled, point-particle formulation that accounts for the disturbance created by the dispersed particles in obtaining the undisturbed fluid flow field needed for…
Modeling Drop Deformation Effects in the Euler-Lagrange Prediction of Liquid Jet in Cross Flow
Pedram Pakseresht, Sourabh V. Apte
Accurate prediction of spray atomization process using an Euler-Lagrange (EL) approach is challenging because of high volume fraction of the liquid phase in dense regimes. This wou…
Volumetric Displacement Effects of Dispersed Phase on the Euler-Lagrange Prediction of a Dense Spray
Pedram Pakseresht, Sourabh V. Apte
Accurate prediction of a dense spray using an Euler-Lagrange approach is challenging because of high volume fraction of the dispersed phase due to subgrid cluster of droplets. To a…
A general velocity correction scheme for two-way coupled point-particle simulations
Pedram Pakseresht, Mahdi Esmaily, Sourabh V. Apte
The accuracy of Euler-Lagrange point-particle models employed in particle-laden fluid flow simulations depends on accurate estimation of the particle force through closure models.…
Modeling the Dense Spray Regime Using an Euler-Lagrange Approach With Volumetric Displacement Effects
Pedram Pakseresht, Sourabh V. Apte
Modeling of a dense spray regime using an Euler-Lagrange approach is challenging because of local high volume loading. A cluster of droplets, that are assumed subgrid, can lead to…