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Engineering and Technology

D-Index
37
Citations
3888
World Ranking
8517
National Ranking
197

Overview

Guillaume Galliero is affiliated with the University of Pau and the Adour Region in France. Their research primarily centers on engineering, with substantial contributions across related subfields including biomedical engineering, fluid flow and transfer processes, materials chemistry, mechanics of materials, and computational mechanics.

The scientist's work covers a range of main topics such as phase equilibria and thermodynamics, thermodynamic properties of mixtures, hydrocarbon exploration and reservoir analysis, material dynamics and properties, chemical thermodynamics and molecular structure, field-flow fractionation techniques, and CO2 sequestration and geologic interactions.

Recent publications by Galliero include:

  • Solubility of H2 in water and NaCl brine under subsurface storage conditions: Measurements and thermodynamic modeling (2023), International Journal of Hydrogen Energy
  • Revisiting the Entropy-Scaling Concept for Shear-Viscosity Estimation from Cubic and SAFT Equations of State: Application to Pure Fluids in Gas, Liquid and Supercritical States (2021), Industrial & Engineering Chemistry Research
  • An entropy scaling demarcation of gas- and liquid-like fluid behaviors (2020), The Journal of Chemical Physics
  • Dynamic Crossover in Fluids: From Hard Spheres to Molecules (2021), The Journal of Physical Chemistry Letters
  • Entropy Scaling-Based Correlation for Estimating the Self-Diffusion Coefficients of Pure Fluids (2022), Industrial & Engineering Chemistry Research

Frequent co-authors in Galliero's research include:

  • Hai Hoang
  • Jean-Luc Daridon
  • Salaheddine Chabab
  • Stéphanie Delage Santacreu
  • Aghilas Dehlouz

The scientist's most common venues for publication are:

  • International Journal of Hydrogen Energy
  • Industrial & Engineering Chemistry Research
  • The Journal of Chemical Physics
  • Journal of Molecular Liquids
  • Geochimica et Cosmochimica Acta

Best Publications

  • Transport of Multicomponent Hydrocarbon Mixtures in Shale Organic Matter by Molecular Simulations

    Julien Collell;Guillaume Galliero;Romain Vermorel;Philippe Ungerer

  • Molecular Simulation of Bulk Organic Matter in Type II Shales in the Middle of the Oil Formation Window

    Julien Collell;Philippe Ungerer;Guillaume Galliero;Marianna Yiannourakou

  • Molecular Dynamics Study of the Lennard-Jones Fluid Viscosity: Application to Real Fluids

    Guillaume Galliero;Christian Boned;Antoine Baylaucq

  • Molecular simulation and modelisation of methane/ethane mixtures adsorption onto a microporous molecular model of kerogen under typical reservoir conditions

    Julien Collell;Julien Collell;Guillaume Galliero;François Gouth;François Montel

  • Scaling of the viscosity of the Lennard-Jones chain fluid model, argon, and some normal alkanes.

    Guillaume Galliero;Christian Boned;Josefa Fernández

  • Initial state of petroleum reservoirs : A comprehensive approach

    François Montel;Jacques Bickert;Aurélie Lagisquet;Guillaume Galliéro;Guillaume Galliéro

  • Thermal diffusion sensitivity to the molecular parameters of a binary equimolar mixture, a non-equilibrium molecular dynamics approach

    Guillaume Galliéro;Bernard Duguay;Jean-Paul Caltagirone;François Montel

  • Local viscosity of a fluid confined in a narrow pore.

    Hai Hoang;Guillaume Galliero

  • Thermodiffusion in model nanofluids by molecular dynamics simulations

    Guillaume Galliero;Sebastian Volz

  • Interfacial properties of the Mie n-6 fluid: Molecular simulations and gradient theory results.

    Guillaume Galliero;Manuel M. Piñeiro;Bruno Mendiboure;Christelle Miqueu

  • Molecular dynamics comparative study of Lennard-Jones -6 and exponential -6 potentials: application to real simple fluids (viscosity and pressure).

    Guillaume Galliéro;Christian Boned;Antoine Baylaucq;François Montel

  • A New Model for Thermal Diffusion : Kinetic Approach

    Pierre-Arnaud Artola;Bernard Rousseau;Guillaume Galliéro

  • Thermal conductivity of the Lennard-Jones fluid: An empirical correlation

    Mathilde Bugel;Guillaume Galliero;Guillaume Galliero

  • Thermal conductivity of the Lennard-Jones chain fluid model

    Guillaume Galliero;Christian Boned

  • Solubility of H2 in water and NaCl brine under subsurface storage conditions: Measurements and thermodynamic modeling

    Unknown

  • Shear viscosity of the Lennard-Jones chain fluid in its gaseous, supercritical, and liquid states.

    Guillaume Galliero;Christian Boned

  • Stereoisomeric effects on volumetric properties under pressure for the system cis- + trans-decalin

    Yasufumi Miyake;Yasufumi Miyake;Antoine Baylaucq;Claus K. Zéberg-Mikkelsen;Guillaume Galliéro

  • Viscosity measurements for squalane at high pressures to 350 MPa from T = (293.15 to 363.15) K

    María J.P. Comuñas;Xavier Paredes;Félix M. Gaciño;Josefa Fernández

  • Liquid density of 1-butanol at pressures up to 140 MPa and from 293.15 K to 403.15 K

    F. Alaoui;F. Alaoui;E. Montero;J.P. Bazile;M.J.P. Comuñas

  • Reference Correlation of the Viscosity of Squalane from 273 to 373 K at 0.1 MPa

    María J P Comuñas;Xavier Paredes;Félix M. Gaciño;J. Fernández

  • Impact of Thermodiffusion on the Initial Vertical Distribution of Species in Hydrocarbon Reservoirs

    Guillaume Galliero;Henri Bataller;Fabrizio Croccolo;Romain Vermorel

Frequent Co-Authors

Jean-Paul Caltagirone
Jean-Paul Caltagirone University of Bordeaux
Josefa Fernández
Josefa Fernández University of Santiago de Compostela
Bernard Rousseau
Bernard Rousseau University of Paris-Saclay
Gilles Pijaudier-Cabot
Gilles Pijaudier-Cabot University of Pau and the Adour Region
Kenneth R. Harris
Kenneth R. Harris University of New South Wales
Jean Claude Legros
Jean Claude Legros Université Libre de Bruxelles
Marc J. Assael
Marc J. Assael Aristotle University of Thessaloniki
Sebastian Volz
Sebastian Volz University of Tokyo
Manuel M. Piñeiro
Manuel M. Piñeiro Universidade de Vigo
Dominique Legendre
Dominique Legendre National Polytechnic Institute of Toulouse

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