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20182026
most citedA kinetic energy--and entropy-preserving scheme for compressible two-phase flows

31 citations · 42 across the 8 of their papers we have counts for

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physics.flu-dyn2026

LES of Droplet Impingement: Application to Clean and Laser-Scanned Ice Shapes

Federico Zabaleta, Brett Bornhoft, Suhas S. Jain +2

The prediction of aircraft icing is conventionally performed using multishot simulation frameworks that fail to predict the progressive roughening of the ice surface. To understand…

physics.flu-dyn2026

Laminar-to-Turbulent Transition of Yield-Stress Fluids in Pipe and Channel Flows

Shivam Prajapati, Prasoon Suchandra, Vivek Kumar +3

We present direct numerical simulations (DNS) of laminar to turbulent transition in Herschel-Bulkley (HB) yield-stress fluids flowing through pipes and rectangular channels. The si…

physics.flu-dyn20257 cited

Large eddy simulations of conjugate heat transfer in boundary layers over laser-scanned ice roughness

Federico Zabaleta, Brett Bornhoft, Suhas S. Jain +2

Accurate modeling of ice accretion is important for safe and efficient design of aircraft and wind turbine systems. Heat transfer predictions obtained from fluid flow solvers are u…

physics.flu-dyn20232 cited

Large-eddy simulations of the NACA23012 airfoil with laser-scanned ice shapes

Brett Bornhoft, Suhas S. Jain, Konrad Goc +2

In this study, five ice shapes generated at NASA Glenn's Icing Research Tunnel (IRT) are simulated at multiple angles of attack (Broeren et al., J. of Aircraft, 2018). These geomet…

physics.flu-dyn2023

Stable, entropy-consistent, and localized artificial-diffusivity method for capturing discontinuities

Suhas S. Jain, Rahul Agrawal, Parviz Moin

In this work, a localized artificial-viscosity/diffusivity method is proposed for accurately capturing discontinuities in compressible flows. There have been numerous efforts to im…

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…