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Mathematical Foundations

People specializing in this area

Academic/PI

Dr Mike Bithell

 

Computational methods

    • GPU methods for discrete particle interactions

Dr Ed Brambley

 

Computational methods

    • theory of computational aeroacoustics

Prof Colm-cille Caulfield

 

Variational methods

    • direct-adjoint methods for generalised stability theory

Dr John Coull

 

Computational methods

    • RANS and LES codes, turbine design and transition studies

Prof Ray Goldstein

 

Topological fluid dynamics

    • instabilities of minimal surfaces

Dr Michael Herzog

 

Computational methods

    • application of adaptive grid approaches in atmospheric modelling

Prof Matthew Juniper

 

Variational methods

    • application of nonlinear adjoint looping (constrained optimization with variational methods) to thermoacoustics

Dr Eric Lauga

 

Variational methods

    • in the context of elasticity only

Prof Mike Proctor

 

Topological fluid dynamics

    • fast dynamo theory

Dr Eric Rees

 

Computational methods

    • super-resolution microscopy, particle tracking, fluorescent shell analysis, and single molecule polarisation imaging software methods

Dr Alex Routh

 

Navier-Stokes equations


Prof Paul Tucker

 

Computational methods

    • Computational Fluid Dynamics, Computational Aeroacoustics

Prof Ian Wilson

 

Computational methods

    • user of CFD: development of coupled fluid-particle models for very dense suspensions.

General fluid mechanics

Navier-Stokes equations


Research Staff

Dr Chris Richardson

 

Computational methods

    • finite element method