Javier Urzay

Javier Urzay

Stanford University

H-index: 25

North America-United States

About Javier Urzay

Javier Urzay, With an exceptional h-index of 25 and a recent h-index of 22 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Hypersonics, Rocket Propulsion, Fluid Mechanics, Combustion, Aeronautics & Astronautics.

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

Laser-induced indirect ignition of non-premixed turbulent shear layers

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

An integrated heterogeneous computing framework for ensemble simulations of laser-induced ignition

Computational Approach for Direct Simulation of High-Enthalpy Turbulent Hypersonic Flows in Thermochemical Nonequilibrium

Stagnation enthalpy effects on turbulent compression corner flow at Mach 5

Thermochemical effects on hypersonic shock waves interacting with weak turbulence

Locally self-similar formulation for hypersonic laminar boundary layers in thermochemical nonequilibrium

Direct numerical simulation of a hypersonic transitional boundary layer at suborbital enthalpies

Javier Urzay Information

University

Position

Center for Turbulence Research

Citations(all)

2135

Citations(since 2020)

1684

Cited By

1038

hIndex(all)

25

hIndex(since 2020)

22

i10Index(all)

37

i10Index(since 2020)

34

Email

University Profile Page

Google Scholar

Javier Urzay Skills & Research Interests

Hypersonics

Rocket Propulsion

Fluid Mechanics

Combustion

Aeronautics & Astronautics

Top articles of Javier Urzay

Title

Journal

Author(s)

Publication Date

Laser-induced indirect ignition of non-premixed turbulent shear layers

Combustion and Flame

Jonathan M Wang

Mario Di Renzo

Gianluca Iaccarino

Hai Wang

Javier Urzay

2024/6/1

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

Journal of Computational Physics

Christopher Williams

Mario Di Renzo

Javier Urzay

Parviz Moin

2024/4/24

An integrated heterogeneous computing framework for ensemble simulations of laser-induced ignition

Kazuki Maeda

Thiago Teixeira

Jonathan M Wang

Jeffrery Hokanson

Caetano Melone

...

2023

Computational Approach for Direct Simulation of High-Enthalpy Turbulent Hypersonic Flows in Thermochemical Nonequilibrium

Bulletin of the American Physical Society

Christopher Williams

Mario Di Renzo

Javier Urzay

Parviz Moin

2022/11/22

Stagnation enthalpy effects on turbulent compression corner flow at Mach 5

Proceedings of the CTR Summer Program

Mario Di Renzo

CT Williams

J Urzay

S Pirozzoli

2022

Thermochemical effects on hypersonic shock waves interacting with weak turbulence

Physics of Fluids

C Huete

A Cuadra

M Vera

J Urzay

2021/8/1

Locally self-similar formulation for hypersonic laminar boundary layers in thermochemical nonequilibrium

CTR Annu. Res. Briefs

C Williams

M Di Renzo

P Moin

J Urzay

2021

Direct numerical simulation of a hypersonic transitional boundary layer at suborbital enthalpies

Journal of Fluid Mechanics

Mario Di Renzo

Javier Urzay

2021/4

Theory of turbulence augmentation across hypersonic shock waves

APS Division of Fluid Dynamics Meeting Abstracts

Alberto Cuadra Lara

Cesar Huete

Marcos Vera

Javier Urzay

2021

The turbulent bubble break-up cascade. Part 2. Numerical simulations of breaking waves

Journal of Fluid Mechanics

Wai Hong Ronald Chan

Perry L Johnson

Parviz Moin

Javier Urzay

2021/4

Transcritical diffuse-interface hydrodynamics of propellants in high-pressure combustors of chemical propulsion systems

Progress in Energy and Combustion Science

Lluis Jofre

Javier Urzay

2021/1

Two-temperature extension of the HTR solver for hypersonic turbulent flows in thermochemical nonequilibrium

Annual Research Briefs, Center for Turbulence Research, Stanford University

C Williams

M Di Renzo

J Urzay

2021

Progress on laser ignition simulations of a CH4/O2 subscale rocket combustor using a multi-GPU task-based solver

Center for Turbulence Research Annual Research Briefs

J Wang

M Di Renzo

C Williams

J Urzay

G Iaccarino

2021

Engineering aspects of hypersonic turbulent flows at suborbital enthalpies

Annual Research Briefs, Center for Turbulence Research, Stanford University

Javier Urzay

Mario Di Renzo

2020

Shock-induced heating and transition to turbulence in a hypersonic boundary layer

Journal of Fluid Mechanics

Lin Fu

Michael Karp

Sanjeeb Bose

Parviz Moin

Javier Urzay

2020

HTR solver: An open-source exascale-oriented task-based multi-GPU high-order code for hypersonic aerothermodynamics

Computer Physics Communications

Mario Di Renzo

Lin Fu

Javier Urzay

2020/10/1

The physical characteristics of hypersonic flows

J Urzay

2020/7

See List of Professors in Javier Urzay University(Stanford University)