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Last updated:

September 23, 2023

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FREE

This course includes:

Unlimited Duration

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Description

Introduction to Aerodynamics. Instructor: Dr. K.P. Sinhamahapatra, Department of Aerospace Engineering, IIT Kharagpur.

This course provides an introduction to aerodynamics, covering topics: aircraft and aerodynamic forces and moments, fluids and forces in fluids, kinematics of fluid motion, conservation of energy, equations of motion, potential flow, conformal transformation, Zhukovsky transformation, and boundary-layer theory. (from nptel.ac.in)

Course Curriculum

  • Lecture 01 – Aircraft and Aerodynamic Forces and Moments Unlimited
  • Lecture 02 – Aircraft and Aerodynamic Forces and Moments (cont.) Unlimited
  • Lecture 03 – Fluids and Forces in Fluids Unlimited
  • Lecture 04 – Fluids and Forces in Fluids (cont.) Unlimited
  • Lecture 05 – Forces in Fluids Unlimited
  • Lecture 06 – Forces in Fluids (cont.) Unlimited
  • Lecture 07 – Kinematics of Fluid Motion Unlimited
  • Lecture 08 – Kinematics of Fluid Motion (cont.) Unlimited
  • Lecture 09 – Kinematics of Fluid Motion (cont.) Unlimited
  • Lecture 10 – Kinematics of Fluid Motion (cont.) Unlimited
  • Lecture 11 – Kinematics of Fluid Motion – Velocity with Specified Extension and Vorticity Unlimited
  • Lecture 12 – Kinematics of Fluid Motion – Velocity with Specified Extension and Vorticity (cont.) Unlimited
  • Lecture 13 – Kinematics of Fluid Motion – Vorticity Distribution Unlimited
  • Lecture 14 – Kinematics of Fluid Motion – Velocity without Expansion and Vorticity Unlimited
  • Lecture 15 – Irrotational Solenoidal Flow in Multiply Connected Region Unlimited
  • Lecture 16 – Irrotational Solenoidal Flow in Multiply Connected Region (cont.) Unlimited
  • Lecture 17 – Equations of Fluid Motion – Navier-Stokes Equation Unlimited
  • Lecture 18 – Equations of Fluid Motion – Navier-Stokes Equation (cont.) Unlimited
  • Lecture 19 – Equations of Fluid Motion – Navier-Stokes Equation (cont.) Unlimited
  • Lecture 20 – Conservation of Energy and Energy Equation Unlimited
  • Lecture 21 – Equations of Motion Unlimited
  • Lecture 22 – Equations of Motion (cont.) Unlimited
  • Lecture 23 – Exact Solution for Simple Problems Unlimited
  • Lecture 24 – Exact Solution for Simple Problems (cont.) Unlimited
  • Lecture 25 – Non-dimensional Form of the Equations and Possible Simplifications Unlimited
  • Lecture 26 – High Reynolds Number Approximation Unlimited
  • Lecture 27 – Conditions for Incompressibility Unlimited
  • Lecture 28 – Potential Flow Unlimited
  • Lecture 29 – Potential Flow – Combination of Basic Solutions Unlimited
  • Lecture 30 – Potential Flow – Combination of Basic Solutions (cont.) Unlimited
  • Lecture 31 – Potential Flow – Combination of Basic Solutions (cont.) Unlimited
  • Lecture 32 – Potential Flow – Combination of Basic Solutions (cont.) – Lifting Cylinder Unlimited
  • Lecture 33 – Conformal Transformation Unlimited
  • Lecture 34 – Conformal Transformation (cont.) Unlimited
  • Lecture 35 – Zhukovsky Transformation Unlimited
  • Lecture 36 – Zhukovsky Transformation (cont.) Unlimited
  • Lecture 37 – Zhukovsky Transformation – Applications Unlimited
  • Lecture 38 – Zhukovsky Transformation – Applications (cont.) Unlimited
  • Lecture 39 – Zhukovsky Transformation – Applications (cont.) Unlimited
  • Lecture 40 – Transformation Unlimited
  • Lecture 41 – Transformation (cont.) Unlimited
  • Lecture 42 – Boundary-Layer Theory Unlimited
  • Lecture 43 – Boundary-Layer Theory (cont.) Unlimited
  • Lecture 44 – Boundary-Layer Theory (cont.) Unlimited
  • Lecture 45 – Boundary-Layer Theory (cont.) Unlimited
  • Lecture 46 – Boundary-Layer Theory (cont.) Unlimited

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