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forward the use of phase field models in earthquake rupture dynamics and fluid-driven fracture processes. The project bridges applied geophysics and computational mechanics, and is jointly developed with
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Fluid Dynamics at the University of Exeter to work on an STFC funded project to investigate the observational signatures of nonlinear damping of MHD kink waves. In particular this project will focus
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applications working on industrial related projects using high performance computing clusters would also be advantageous Strong foundation in Fluid Dynamics Strong prior experience in CFD – particularly in
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should be proposed and tested, accounting for determinant conditions such as low permeability and the interplay with rock-fluid properties and chemistry. Project proposal As an applicant, given the broad
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, accounting for determinant conditions such as low permeability and the interplay with rock-fluid properties and chemistry. Project proposal As an applicant, given the broad scope of the centre and the project
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as the working fluid, which will serv as testbed for data generation and analysis of various methodologies Three gas boilers and two electric boilers Hot water accumulator and dry coolers Solid state
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. Numerical simulations and theoretical membrane models will be developed, aiming to couple viscous interfacial fluid flow, elastic deformations and wetting-like processes at cellular membranes. The theoretical
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performance computing clusters would also be advantageous Strong foundation in Fluid Dynamics Strong prior experience in CFD – particularly in battery fire combustion and spread. Strong skills in turbulence
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physics, as well as cosmology. Specific areas of interest include: Heavy flavor physics, CP-violation, and perturbative QCD. Relativistic kinetic theory, fluid dynamics, and high-energy nuclear collisions
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one of the existing areas of strength of the Department. In pure mathematics, these include algebraic geometry, number theory, representation theory, invariant theory, dynamical systems, free