World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
50
Citations
10354
World Ranking
1163
National Ranking
26

Research.com Recognitions

  • 2006 - Fellow of American Physical Society (APS) Citation For numerical and theoretical contributions to the understanding and description of multiphase flows at both high and low Reynolds numbers, including turbulent flows and heat and mass transfer

Overview

Jacques Magnaudet is affiliated with the Institute of Fluid Mechanics of Toulouse in France. Their research primarily focuses on engineering and earth and planetary sciences, with significant contributions in the fields of computational mechanics, ocean engineering, earth-surface processes, biomedical engineering, and condensed matter physics.

The scientist's work largely centers around fluid dynamics and related topics. Main research themes include particle dynamics in fluid flows, fluid dynamics and heat transfer, fluid dynamics and mixing, granular flow and fluidized beds, aeolian processes and effects, fluid dynamics and turbulent flows, and lattice Boltzmann simulation studies.

Recent publications illustrate the breadth and focus of their research. Selected papers include:

  • Three-dimensional dynamics of a pair of deformable bubbles rising initially in line. Part 1. Moderately inertial regimes (2021), Journal of Fluid Mechanics
  • Hydrodynamic forces on a clean spherical bubble translating in a wall-bounded linear shear flow (2020), Physical Review Fluids
  • Drag and lift forces on a rigid sphere immersed in a wall-bounded linear shear flow (2021), Physical Review Fluids
  • When, how, and why the path of an air bubble rising in pure water becomes unstable (2023), Proceedings of the National Academy of Sciences
  • Revisiting the Taylor-Culick approximation: Retraction of an axisymmetric filament (2020), Physical Review Fluids

Key frequent coauthors contributing to their research include Jie Zhang, Pengyu Shi, Roland Rzehak, Dirk Lucas, and Paul Bonnefis.

Frequent publication venues where their work appears are the Journal of Fluid Mechanics, arXiv (Cornell University), Physical Review Fluids, Proceedings of the National Academy of Sciences, and the Journal of Computational Physics.

Jacques Magnaudet has also been recognized as a Fellow of the American Physical Society (APS) since 2006 for contributions related to the understanding and description of multiphase flows at both high and low Reynolds numbers, including turbulent flows and heat and mass transfer.

Best Publications

  • The Motion of High-Reynolds-Number Bubbles in Inhomogeneous Flows

    Jacques Magnaudet;Ian Eames

  • The lift force on a spherical bubble in a viscous linear shear flow

    Dominique Legendre;Jacques Magnaudet

  • Accelerated flows past a rigid sphere or a spherical bubble. Part 1. Steady straining flow

    Jacques Magnaudet;Mayela Rivero;Jean Fabre

  • Wake-Induced Oscillatory Paths of Bodies Freely Rising or Falling in Fluids

    Patricia Ern;Frédéric Risso;David Fabre;Jacques Magnaudet

  • Path instability of a rising bubble.

    Guillaume Mougin;Jacques Magnaudet

  • The effects of slightly soluble surfactants on the flow around a spherical bubble

    B. Cuenot;J. Magnaudet;B. Spennato

  • Large-eddy simulation of high-Schmidt number mass transfer in a turbulent channel flow

    Isabelle Calmet;Jacques Magnaudet

  • Hydrodynamic interactions between two spherical bubbles rising side by side in a viscous liquid

    Dominique Legendre;Jacques Magnaudet;Guillaume Mougin

  • Wake instability of a fixed spheroidal bubble

    Jacques Magnaudet;Guillaume Mougin

  • Bifurcations and symmetry breaking in the wake of axisymmetric bodies

    David Fabre;Franck Auguste;Jacques Magnaudet

  • An interface-capturing method for incompressible two-phase flows. Validation and application to bubble dynamics

    Thomas Bonometti;Jacques Magnaudet

  • The transverse force on clean and contaminated bubbles rising near a vertical wall at moderate Reynolds number

    Fumio Takemura;Jacques Magnaudet

  • Drag, deformation and lateral migration of a buoyant drop moving near a wall

    Jacques Magnaudet;Shu Takagi;Dominique Legendre

  • The viscous drag force on a spherical bubble with a time-dependent radius

    Jacques Magnaudet;Dominique Legendre

  • Experimental and numerical study of droplets hydrodynamics in microchannels

    Flavie Sarrazin;Karine Loubière;Laurent Prat;Christophe Gourdon

  • The generalized Kirchhoff equations and their application to the interaction between a rigid body and an arbitrary time-dependent viscous flow

    G Mougin;J Magnaudet

  • Path instability of rising spheroidal air bubbles: A shape-controlled process

    Roberto Zenit;Jacques Magnaudet

  • Paths and wakes of deformable nearly spheroidal rising bubbles close to the transition to path instability

    José Carlos Cano-Lozano;Carlos Martínez-Bazán;Jacques Magnaudet;Joël Tchoufag

  • A note on the lift force on a spherical bubble or drop in a low-Reynolds-number shear flow

    Dominique Legendre;Jacques Magnaudet

  • Drag and lift forces on a bubble rising near a vertical wall in a viscous liquid

    Fumio Takemura;Shu Takagi;Jacques Magnaudet;Yoichiro Matsumoto

  • Path instability of a rising bubble

    Jacques Magnaudet;Guillaume Mougin

Frequent Co-Authors

Dominique Legendre
Dominique Legendre National Polytechnic Institute of Toulouse
Andrea Prosperetti
Andrea Prosperetti University of Houston
Detlef Lohse
Detlef Lohse University of Twente
Christophe Gourdon
Christophe Gourdon National Polytechnic Institute of Toulouse
Alessandro Bottaro
Alessandro Bottaro University of Genoa
Jeffrey F. Morris
Jeffrey F. Morris City College of New York
Christophe Clanet
Christophe Clanet École Polytechnique
NG Niels Deen
NG Niels Deen Eindhoven University of Technology
Stephen G. Monismith
Stephen G. Monismith Stanford University
Stéphane Zaleski
Stéphane Zaleski Sorbonne University

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