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My new site is here

http://cpraveen.github.io

I am a Reader in the Tata Institute of Fundamental Research, Center for Applicable Mathematics, Bangalore. My official page is located here. Currently, I am also part of the Airbus Chair on Mathematics of Complex Systems.

If you are a student looking for internship or some research position, please read this.

Experience

  1. 3’rd Jan, 2005 to 14’th August 2006: Scientist, Computational and Theoretical Fluid Dynamics Division, National Aerospace Laboratories, Bangalore
  2. 1’st September 2006 to July 2008: Post-doc, Projet OPALE, INRIA, Sophia Antipolis
  3. 6 August 2008 to present: Reader, Tata Institute of Fundamental Research, Center for Applicable Mathematics, Bangalore.

Education

  1. BE, Mechanical Engineering, KREC, Surathkal, 1994-1998
  2. ME, Aerospace Engineering, IISc, Bangalore, 1998-2000 (SR No. 605198127)
  3. PhD, Aerospace Engineering, IISc, Bangalore, 2000-2004 (SR No. 115199529)

Affiliations

Member (M16773), Aeronautical Society of India

Research

My primary research interest is CFD and its applications. I am also interested in numerical analysis and numerical solution of PDE in general.

Ongoing research

  1. A second order well-balanced finite volume scheme for Euler equations with gravity: ideal gas model
  2. A second order well-balanced finite volume scheme for Euler equations with gravity: general equation of state
  3. Well-balanced discontinuous Galerkin method for Euler equations with gravity
  4. Entropy stable finite volume scheme for ideal MHD
  5. Entropy stable discontinuous galerkin scheme for ideal compressible MHD equations
  6. Entropy stable schemes on two-dimensional unstructured grids
  7. An entropy stable discretization for the two dimensional Navier-Stokes equations with stable boundary treatment
  8. Discontinuous Galerkin scheme for Euler and MHD equations on adaptive meshes
  9. Positivity preserving Discontinuous Galerkin scheme for ideal MHD
  10. An arbitrary Lagrangian-Eulerian discontinuous Galerkin method for compressible flows
  11. Hybridizable discontinuous Galerkin method for compressible Navier-Stokes

Organizational activities

Fun in research

Computing