Parviz Moin

Parviz Moin

Stanford University

H-index: 125

North America-United States

About Parviz Moin

Parviz Moin, With an exceptional h-index of 125 and a recent h-index of 70 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Turbulent flows, Fluid Mechanics, Turbulence, Computational Fluid Dynamics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Navier-Stokes characteristic boundary conditions for high-enthalpy compressible flows in thermochemical non-equilibrium

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

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

Are the dynamics of wall turbulence in minimal channels and larger domain channels equivalent? A graph-theoretic approach

Large-eddy simulations of the CRM65 swept wing under real and artificial icing conditions

Slip-Wall-Modeled Large-Eddy Simulation for Prediction of Turbulent Smooth-Body Separation

Wind tunnel and grid resolution effects in large-eddy simulations of the high-lift common research model

Reynolds number dependence of length scales governing turbulent flow separation with application to wall-modeled large-eddy simulations

Parviz Moin Information

University

Position

___

Citations(all)

89596

Citations(since 2020)

23188

Cited By

75296

hIndex(all)

125

hIndex(since 2020)

70

i10Index(all)

363

i10Index(since 2020)

242

Email

University Profile Page

Google Scholar

Parviz Moin Skills & Research Interests

Turbulent flows

Fluid Mechanics

Turbulence

Computational Fluid Dynamics

Top articles of Parviz Moin

Navier-Stokes characteristic boundary conditions for high-enthalpy compressible flows in thermochemical non-equilibrium

Journal of Computational Physics

2024/4/24

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

Physical Review Fluids

2024/2/29

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

Aerospace Science and Technology

2024/2/8

Are the dynamics of wall turbulence in minimal channels and larger domain channels equivalent? A graph-theoretic approach

arXiv preprint arXiv:2401.07918

2024/1/15

Parviz Moin
Parviz Moin

H-Index: 72

Large-eddy simulations of the CRM65 swept wing under real and artificial icing conditions

2024

Suhas S Jain
Suhas S Jain

H-Index: 7

Parviz Moin
Parviz Moin

H-Index: 72

Slip-Wall-Modeled Large-Eddy Simulation for Prediction of Turbulent Smooth-Body Separation

2024

Parviz Moin
Parviz Moin

H-Index: 72

Wind tunnel and grid resolution effects in large-eddy simulations of the high-lift common research model

2024/1

Parviz Moin
Parviz Moin

H-Index: 72

Reynolds number dependence of length scales governing turbulent flow separation with application to wall-modeled large-eddy simulations

arXiv preprint arXiv:2401.00075

2023/12/29

Rahul Agrawal
Rahul Agrawal

H-Index: 1

Parviz Moin
Parviz Moin

H-Index: 72

Development of a wall model for chemically-reacting turbulent hypersonic boundary layers

Bulletin of the American Physical Society

2023/11/21

Free-stream disturbance receptivity and amplification at hypersonic speeds by adjoint Green’s function

Bulletin of the American Physical Society

2023/11/21

Tim Flint
Tim Flint

H-Index: 3

Parviz Moin
Parviz Moin

H-Index: 72

Direct numerical simulation of a strongly reacting turbulent hypersonic boundary layer in chemical nonequilibrium

Bulletin of the American Physical Society

2023/11/21

Christopher Williams
Christopher Williams

H-Index: 5

Parviz Moin
Parviz Moin

H-Index: 72

Near-wall modeling for LES of turbulent channel flows with rough walls

Bulletin of the American Physical Society

2023/11/19

Brett Bornhoft
Brett Bornhoft

H-Index: 4

Parviz Moin
Parviz Moin

H-Index: 72

Investigation of wall-bounded turbulence dynamics using spatiotemporal tracking and network-centric methods

Bulletin of the American Physical Society

2023/11/19

Adrian Lozano-Duran
Adrian Lozano-Duran

H-Index: 18

Parviz Moin
Parviz Moin

H-Index: 72

Evaluation of an optimal slip wall model for large-eddy simulation

Bulletin of the American Physical Society

2023/11/19

Parviz Moin
Parviz Moin

H-Index: 72

Simulating an H-type transitional boundary layer in a coupled NLPSE and WMLES framework with a Falkner-Skan wall model

Bulletin of the American Physical Society

2023/11/19

Carlos Gonzalez
Carlos Gonzalez

H-Index: 41

Parviz Moin
Parviz Moin

H-Index: 72

The spatio-temporal dynamics of momentum-carrying and vortical structures in transitional and fully-developed wall-bounded turbulence

Bulletin of the American Physical Society

2023/11/19

A novel phase field method for droplet freezing

Bulletin of the American Physical Society

2023/11/19

Lucy Brown
Lucy Brown

H-Index: 1

Parviz Moin
Parviz Moin

H-Index: 72

An extension of Thwaites method for turbulent boundary layers

arXiv preprint arXiv:2310.16337

2023/10/25

Near-wall model for compressible turbulent boundary layers based on an inverse velocity transformation

Journal of Fluid Mechanics

2023

Lin Fu
Lin Fu

H-Index: 6

Parviz Moin
Parviz Moin

H-Index: 72

A phase field model for simulating the freezing of supercooled liquid droplets

2023/6/15

See List of Professors in Parviz Moin University(Stanford University)

Co-Authors

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