AEROSPACE ENGINEERING


Degrees Offered: M.E., M.Sc.(Engg), and Ph.D


Research Areas

Aerodynamics: Theoretical and Experimental Fluid Mechanics, Hypersonic and High Enthalpy Flows, Applied Aerodynamics, Computational Fluid Dynamics.

Structures: Non-Destructive Evaluation, Fracture Mechanics, Structural Dynamics and Aeroelasticity, Composite Structures and Smart Strutures, Finite Element Methods, Structural Integrity and Reliability

Flight Mechanics: Flight Mechanics of Aircraft, Orbital Mechanics, Rotocraft Dynamics

Navigation, Guidance and Control: Guidance Avionics, Dynamics and Control of Aerospace Vehicles, Space Robotics, Radar and Electromagnetic Systems, Parallel/Distributed Processing and Neural Network Applications, Optimization and Estimation

Propulsion and Combustion: Aerospace Propulsion, Combustion of Propellants, Basic and Applied Combustion, Experimental and Computational Studies on Reactive Flows.


Computer Skills

Languages : C, C++, FORTRAN, PASCAL,

Operating System : Unix, Linux, MS-DoS, Windows

Packages : Matlab, Mathematica, Maple, NISA, Ansys, Fluent, CFX (TascFlow & 5.6)



Courses

   Structures:
  • Structural Mechanics
  • Structural and Multi-Body Dynamics
  • Finite Element Methods
  • Wave Propagation in Structures
  • Aerospace Structures
  • Composite and Smart Structures
  • Fracture Mechanics
  • Aeroelasticity
   Aerodynamics and Propulsion:
  • Fluid Dynamics
  • Aerodynamics
  • Gas Dynamics and Hypersonic Flow
  • Turbulent Shear Flows
  • Boundary Layer Theory
  • Computational Fluid Mechanics
  • Combustion
  • Aircraft and Rocket Engines
  • Mechanics and Thermodynamics of Propulsion

   Controls:

  • Navigation, Guidance and Control
  • Guidance of Missiles
  • GPS and its Applications
  • Digital Controller Design
  • Random Processes
  • Neural Network and its Applications

   Common Courses:

  • Introduction to Aerospace Vehicles
  • Flight and Space Mechanics
  • Engineering Optimization
  • Experimental Techniques
  • Flight Vehicle Design

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