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Fluid Dynamics

The objective of our group is to gain a better theoretical understanding of real problems in fluid dynamics and other nonlinear systems by the application of various mathematical techniques to the underlying governing equations.

Other exciting areas include:
  • Wakes , bluffbody aerodynamics and vortex interactions
  • Blood flow
  • Applied research to improve fluid-dynamic processes for industry
  • Turbulence, aerodynamics, flow control, propulsion and combustion
  • Direct numerical simulation (DNS) of turbulent flows, dynamics and structure of separated flows
  • Fluid mechanics of complex fluids, Computational Fluid Dynamics (CFD)
  • Turbulent flow topology, boundary layer flow, flow stability, high Reynolds number swirling flows, free surface flows
  • Synchrotron-based in-vivo cardiovascular imaging and velocimetry, Particle Image Velocimetry (PIV) techniques, holographic PIV and image processing development
  • Biological & biomedical engineering& imaging
  • Aeroacoustics, turbomachinery, supersonic jets
  • Simulation of three dimensional flows and non Newtonian fluid flows

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