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20032022
most citedA kinetic energy--and entropy-preserving scheme for compressible two-phase flows

31 citations · 62 across the 8 of their papers we have counts for

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14 papers · 1 filter

physics.flu-dyn202231 cited

A kinetic energy--and entropy-preserving scheme for compressible two-phase flows

Suhas S. Jain, Parviz Moin

Accurate numerical modeling of compressible flows, particularly in the turbulent regime, requires a method that is non-dissipative and stable at high Reynolds () numbers. For a…

physics.flu-dyn20211 cited

Velocity transformation for compressible wall-bounded turbulent flows with and without heat transfer

Kevin Patrick Griffin, Lin Fu, Parviz Moin

In this work, a transformation, which maps the mean velocity profiles of compressible wall-bounded turbulent flows to the incompressible law of the wall is proposed. Unlike existin…

physics.flu-dyn2021

Performance of wall-modeled LES with boundary-layer-conforming grids for external aerodynamics

Adrián Lozano-Durán, Sanjeeb T. Bose, Parviz Moin

We investigate the error scaling and computational cost of wall-modeled large-eddy simulation (WMLES) for external aerodynamic applications. The NASA Juncture Flow is used as repre…

physics.flu-dyn2021

Toward a flow-structure-based wall-modeled large-eddy simulation paradigm

Ahmed Elnahhas, Adrián Lozano-Durán, Parviz Moin

A promising and cost-effective method for numerical simulation of high Re wall-bounded flows is wall-modeled large-eddy simulation. Most wall models are formulated from the Reynold…

physics.flu-dyn20213 cited

Performance of wall-modeled LES for external aerodynamics in the NASA Juncture Flow

Adrián Lozano-Durán, Sanjeeb T. Bose, Parviz Moin

We investigate the performance of wall-modeled LES for external aerodynamics in the NASA Juncture Flow. We characterize the errors in the prediction of mean velocity profiles and p…

physics.flu-dyn202023 cited

Identifying and tracking bubbles and drops in simulations: a toolbox for obtaining sizes, lineages, and breakup and coalescence statistics

Wai Hong Ronald Chan, Michael S. Dodd, Perry L. Johnson +1

Knowledge of bubble and drop size distributions in two-phase flows is important for characterizing a wide range of phenomena, including combustor ignition, sonar communication, and…