World's Best Scientists 2026 revealed!

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Engineering and Technology

D-Index
37
Citations
6298
World Ranking
8333
National Ranking
532

Overview

Dominique Laurence is affiliated with the University of Manchester in the United Kingdom and specializes in engineering, with a focus on computational mechanics, environmental engineering, aerospace engineering, ecological modeling, and civil and structural engineering. Their research spans diverse topics related to fluid dynamics, turbulent flows, and nuclear engineering thermal-hydraulics, among others.

The main topics covered in their work include:

  • Fluid Dynamics and Turbulent Flows
  • Fluid Dynamics and Vibration Analysis
  • Wind and Air Flow Studies
  • Nuclear Engineering Thermal-Hydraulics
  • Erosion and Abrasive Machining
  • Hydraulic Flow and Structures
  • Health, Psychology, and Well-being

Dominique Laurence's recent publications illustrate their involvement in nuclear engineering and fluid dynamics research. Notable papers include:

  • "Liquid lead flow-accelerated corrosion testing with the rotating cage set-up: A CFD optimisation," 2021, Annals of Nuclear Energy
  • "A dual-mesh hybrid RANS-LES simulation of the buoyant flow in a differentially heated square cavity with an improved resolution criterion," 2021, Computers & Fluids
  • "A dual-mesh hybrid Reynolds-averaged Navier-Stokes/Large eddy simulation study of the buoyant flow between coaxial cylinders," 2022, Nuclear Engineering and Design
  • "Définir la guérison et l'autoguérison," 2024, HEGEL - HEpato-GastroEntérologie Libérale
  • "Corrosion sample streamlining to enhance the performance of the rotating cage testing setup," 2024, Nuclear Engineering and Design

The scientist frequently collaborates with other researchers, including Abdelmagid E.A. Ali, Imran Afgan, Alistair Revell, Andrea Cioncolini, and Hector Iacovides. These collaborations have resulted in multiple co-authored publications, primarily in the fields of fluid mechanics and nuclear engineering.

Dominique Laurence's work is regularly published in specialized venues such as:

  • Nuclear Engineering and Design
  • HEGEL - HEpato-GastroEntérologie Libérale
  • Computers & Fluids
  • Annals of Nuclear Energy

The research contributions of Dominique Laurence involve a combination of advanced computational fluid dynamics techniques and experimental approaches to better understand and optimize fluid behavior in industrial and environmental settings. Their publications address both theoretical modeling and practical applications, such as corrosion testing and buoyant flow simulations, highlighting the multidisciplinary nature of their engineering research.

Best Publications

  • A synthetic-eddy-method for generating inflow conditions for large-eddy simulations

    N Jarrin;S Benhamadouche;Dominique Laurence;Robert Prosser

  • Accuracy and stability in incompressible SPH (ISPH) based on the projection method and a new approach

    Rui Xu;Peter Stansby;Dominique Laurence

  • Comparisons of weakly compressible and truly incompressible algorithms for the SPH mesh free particle method

    E. S. Lee;C. Moulinec;R. Xu;D. Violeau

  • Unified semi‐analytical wall boundary conditions for inviscid, laminar or turbulent flows in the meshless SPH method

    Martin Ferrand;Dominique Laurence;Benedict Rogers;Damien Violeau

  • Reconstruction of turbulent fluctuations for hybrid RANS/LES simulations using a Synthetic-Eddy Method

    N. Jarrin;R. Prosser;J.-C. Uribe;S. Benhamadouche

  • LES, coarse LES, and transient RANS comparisons on the flow across a tube bundle

    S Benhamadouche;Dominique Laurence;Dominique Laurence

  • A robust formulation of the v2-f model

    D. R. Laurence;J. C. Uribe;S. V. Utyuzhnikov;S. V. Utyuzhnikov

  • A robust k − ε − v2¯/k elliptic blending turbulence model applied to near-wall, separated and buoyant flows

    F. Billard;D. Laurence

  • LES and RANS of turbulent flow in tube bundles

    Unknown

  • Large eddy simulation of turbulent flow for wall mounted cantilever cylinders of aspect ratio 6 and 10

    Imran Afgan;Charles Moulinec;Charles Moulinec;Robert Prosser;Dominique Laurence;Dominique Laurence

  • Large eddy simulation of a forward–backward facing step for acoustic source identification

    Yacine Addad;Dominique Laurence;Dominique Laurence;C Talotte;M C Jacob

  • Numerical investigation of turbulent natural convection in an inclined square cavity with a hot wavy wall

    M. Aounallah;Y. Addad;S. Benhamadouche;S. Benhamadouche;O. Imine

  • Optimal Unstructured Meshing for Large Eddy Simulations

    Yacine Addad;Ulka Gaitonde;Dominique Laurence;Stefano Rolfo

  • Stochastic modelling of inertial particle dispersion by subgrid motion for LES of high Reynolds number pipe flow

    A. S. Berrouk;D. Laurence;J. J. Riley;D. E. Stock

  • Inhomogeneity and anisotropy effects on the redistribution term in Reynolds-averaged Navier–Stokes modelling

    Rémi Manceau;Meng Wang;Dominique Laurence

  • A Procedure for Using DNS Databases

    S. Parneix;D. Laurence;P. A. Durbin

  • Turbulent heat transfer predictions using the –f model on unstructured meshes

    R. Manceau;S. Parneix;D. Laurence;D. Laurence

  • Stochastic modelling of aerosol deposition for LES of 90° bend turbulent flow

    Abdallah S. Berrouk;Dominique Laurence;Dominique Laurence

  • A stress strain lag eddy viscosity model for unsteady mean flow

    Alistair Revell;S Benhamadouche;Tim Craft;Dominique Laurence

  • Modeling near-wall effects in second-moment closures by elliptic relaxation

    V. Wizman;D. Laurence;M. Kanniche;P. Durbin

  • Reconstruction of turbulent fluctuations for hybrid RANS/LES simulations using a synthetic-eddy method

    N Jarrin;Alistair Revell;Robert Prosser;Dominique Laurence

Frequent Co-Authors

Peter Stansby
Peter Stansby University of Manchester
Alistair Revell
Alistair Revell University of Manchester
Benedict D. Rogers
Benedict D. Rogers University of Manchester
Brian Launder
Brian Launder University of Manchester
James J. Riley
James J. Riley University of Washington
Hector Iacovides
Hector Iacovides University of Manchester
Paul A. Durbin
Paul A. Durbin Iowa State University
Stéphane Moreau
Stéphane Moreau Université de Sherbrooke
Geoffrey F. Hewitt
Geoffrey F. Hewitt Imperial College London
Robert A. Dalrymple
Robert A. Dalrymple Johns Hopkins University

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