Aircraft and Aerodynamic Forces and Moments – Fluids and Forces in Fluids – Forces in Fluids-Kinematics of fluid motion – Kinematics of fluid motion – Velocity with specified extension and vorticity -Irrotational Solenoidal Flow in Multiply Connected region

Equations of Fluid Motion – Navier – Stokes Equation – Conservation of Energy and Energy Equation – Equations of Motions-Exact Solution for Simple Problems – Non-dimensional Form of the Equations and Possible Simplifications – High Reynolds Number Approximation – Conditions fior Incompressibility – Potential Flow – Combination of Basic Solutions – Conformal Transformation – Zhukovsky Transformation – Applications – Transformation – Boundary – Layer Theory

Other Resources

Course Curriculum

Aircraft and Aerodynamic Forces and Moments Details 56:52
Aircraft and Aerodynamic Forces and Moments (Contd.) I Details 56:16
Fluids and Forces in Fluids Details 56:20
Fluids and Forces in Fluids I Details 59:29
Forces in Fluids II Details 57:35
Forces in Fluids IIIII Details 58:51
Kinematics of fluid motion Details 57:16
Kinematics of fluid motion I Details 58:46
Kinematics of fluid motion II Details 57:45
Kinematics of fluid motion III Details 58:59
Kinematics of fluid motion – Velocity with specified extension and vorticity IV Details 56:40
Kinematics of fluid motion – Velocity with specified extension and vorticity V Details 58:35
Kinematics of fluid motion – Vorticity Distribution VI Details 57:54
Kinematics of fluid motion – Velocity without expansion and vorticity VII Details 59:59
Irrotational Solenoidal Flow in Multiply Connected region Details 57:56
Irrotational Solenoidal Flow in Multiply Connected region I Details 58:4
Equations of Fluid Motion – Navier – Stokes Equation Details 53:9
Equations of Fluid Motion – Navier – Stokes Equation I Details 58:58
Equations of Fluid Motion – Navier – Stokes Equation (Contd. ) II Details 53:49
Conservation of Energy and Energy Equation Details 53:24
Equations of Motions Details 59:31
Equations of Motion I Details 55:47
Exact Solution for Simple Problems Details 56:27
Exact Solution for Simple Problems I Details 57:33
Non-dimensional Form of the Equations and Possible Simplifications Details 55:13
High Reynolds Number Approximation Details 55:40
Conditions fior Incompressibility Details 59:22
Potential Flow Details 59:7
Potential Flow – Combination of Basic Solutions I Details 59:31
Potential Flow – Combination of Basic Solutions II Details 57:55
Potential Flow – Combination of Basic Solutions III Details 59:58
Potential Flow – Combination of Basic Solutions (Contd. ) – Lifting Cylinder IV Details 56:52
Conformal Transformation Details 0:1
Conformal Transformation I Details 59:16
Zhukovsky Transformation Details 55:40
Zhukovsky Transformation I Details 57:50
Zhukovsky Transformation – Applications Details 58:3
Zhukovsky Transformation – Applications I Details 58:55
Zhukovsky Transformation – Applications II Details 56:59
Transformation Details 59:16
Transformation I Details 58:13
Boundary – Layer Theory Details 59:17
Boundary – Layer Theory I Details 57:17
Boundary – Layer Theory II Details 58:18
Boundary – Layer Theory III Details 51:41
Boundary – Layer Theory IV Details 1:7

These video tutorials are delivered by IIT Kharagpur as part of NPTEL online courses program.

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