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Mechanical and Aerospace Engineering

D-Index
41
Citations
9022
World Ranking
1890
National Ranking
52

Overview

Richard Saurel is affiliated with Aix-Marseille University in France. Their research primarily focuses on engineering, with a total of 28 publications in this field. Within engineering, their subfields of study include computational mechanics, aerospace engineering, mechanics of materials, applied mathematics, and atmospheric science.

The scientist's main topics of work cover areas such as computational fluid dynamics and aerodynamics, combustion and detonation processes, energetic materials and combustion, gas dynamics and kinetic theory, high-pressure geophysics and materials, fluid dynamics and turbulent flows, and rocket and propulsion systems research.

Richard Saurel has contributed to multiple research articles published in various venues. Notable frequent publication venues include:

  • Physics of Fluids (5 publications)
  • Journal of Computational Physics (2 publications)
  • arXiv (Cornell University) (2 publications)
  • Computers & Fluids (1 publication)
  • Journal of Scientific Computing (1 publication)

Recent papers authored or coauthored by Richard Saurel span from 2020 to 2024 and include:

  • Numerical investigations of two-phase finger-like instabilities, 2020, Computers & Fluids
  • Noble-Abel/first-order virial equations of state for gas mixtures resulting from multiple condensed reactive materials combustion, 2022, Physics of Fluids
  • Relaxation method for Mie-Grüneisen type equations of state, 2023, Physics of Fluids
  • A Method to Solve Hamilton-Jacobi Type Equation on Unstructured Meshes, 2021, Journal of Scientific Computing
  • Existence condition for detonations in condensed explosives with pressure-temperature equilibrium models, 2024, Physics of Fluids

Throughout their career, Richard Saurel has frequently collaborated with several coauthors, including:

  • Loann Neron
  • Alexandre Chiapolino
  • Emmanuel Lapébie
  • François Fraysse

Best Publications

  • A Multiphase Godunov Method for Compressible Multifluid and Multiphase Flows

    Richard Saurel;Rémi Abgrall

  • A Simple Method for Compressible Multifluid Flows

    Richard Saurel;Rémi Abgrall

  • Simple and efficient relaxation methods for interfaces separating compressible fluids, cavitating flows and shocks in multiphase mixtures

    Richard Saurel;Fabien Petitpas;Ray A. Berry

  • Modelling phase transition in metastable liquids: Application to cavitating and flashing flows.

    Richard Saurel;Fabien Petitpas;Remi Abgrall

  • A multiphase model for compressible flows with interfaces, shocks, detonation waves and cavitation

    Richard Saurel;Olivier Lemetayer

  • Discrete equations for physical and numerical compressible multiphase mixtures

    Rémi Abgrall;Richard Saurel

  • Mathematical and numerical modeling of two-phase compressible flows with micro-inertia

    Sergey Gavrilyuk;Richard Saurel

  • A compressible flow model with capillary effects

    Guillaume Perigaud;Richard Saurel

  • The Noble-Abel Stiffened-Gas equation of state

    Olivier Le Métayer;Richard Saurel

  • Diffuse-Interface Capturing Methods for Compressible Two-Phase Flows

    Richard Saurel;Carlos Pantano

  • Élaboration des lois d'état d'un liquide et de sa vapeur pour les modèles d'écoulements diphasiques

    O Le Métayer;O Le Métayer;J Massoni;J Massoni;R Saurel;R Saurel;R Saurel

  • Solid-fluid diffuse interface model in cases of extreme deformations

    N. Favrie;S. L. Gavrilyuk;R. Saurel

  • Modelling evaporation fronts with reactive Riemann solvers

    O. Le Métayer;J. Massoni;R. Saurel

  • Modelling detonation waves in heterogeneous energetic materials

    Ashwin Chinnayya;Eric Daniel;Richard Saurel

  • A Riemann Problem Based Method for the Resolution of Compressible Multimaterial Flows

    Jean-Pierre Cocchi;Richard Saurel

  • A multiphase model with internal degrees of freedom: application to shock–bubble interaction

    Richard Saurel;Sergey Gavrilyuk;François Renaud

  • Numerical Study of Cavitation in the Wake of a Hypervelocity Underwater Projectile

    Richard Saurel;Jean Pierre Cocchi;P. Barry Butler

  • Shock jump relations for multiphase mixtures with stiff mechanical relaxation

    R. Saurel;O. Le Métayer;J. Massoni;S. Gavrilyuk

  • Experimental and numerical investigation of the shock-induced fluidization of a particles bed

    X. Rogue;G. Rodriguez;J.F. Haas;R. Saurel

  • Diffuse interface model for high speed cavitating underwater systems

    Fabien Petitpas;Jacques Massoni;Richard Saurel;Emmanuel Lapebie

  • Modelling wave dynamics of compressible elastic materials

    S. L. Gavrilyuk;N. Favrie;R. Saurel

  • A general formulation for cavitating, boiling and evaporating flows

    Richard Saurel;Pierre Boivin;Olivier Le Métayer

  • A mechanistic model for shock initiation of solid explosives

    J. Massoni;R. Saurel;G. Baudin;G. Demol

Frequent Co-Authors

Rémi Abgrall
Rémi Abgrall University of Zurich
Gerald Warnecke
Gerald Warnecke Otto-von-Guericke University Magdeburg
Charbel Farhat
Charbel Farhat Stanford University
Maria Vittoria Salvetti
Maria Vittoria Salvetti University of Pisa
Thierry Coupez
Thierry Coupez Mines ParisTech
Michael Dumbser
Michael Dumbser University of Trento
Iskander Akhatov
Iskander Akhatov Skolkovo Institute of Science and Technology

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