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Internal flow, Pipe friction
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Classroom Contents
Fluid Dynamics and Turbomachines
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- 1 Introduction to Fluid Flow
- 2 Flow field, Stresses on fluid element, Newtonian fluid
- 3 Non Newtonian fluid, Classification of flow, Analysis of flow
- 4 Tutorial
- 5 Integral analysis, Control volume, Generalised conservation equation
- 6 Mass and linear momentum conservation in CV
- 7 Angular momentum conservation, Non-inertial frame of reference
- 8 Tutorial
- 9 Differential Analysis
- 10 Navier-Stokes equation for 2D incompressible flow
- 11 Vorticity, Stream function, Bernoulli's equation
- 12 Tutorial
- 13 External flows, Laminar and Turbulent Boundary Layer
- 14 Differential analysis of boundary layer, Blassius equation
- 15 Boundary Layer flow with pressure gradient, Flow separation
- 16 Internal flow, Pipe friction
- 17 Basic Thermodynamics
- 18 Turbomachines: Definition and classification
- 19 Dimensional Analysis
- 20 Tutorial
- 21 Representation of Turbomachines and Definition of velocity
- 22 Euler's energy equation
- 23 Real fluid flow and efficiency of turbomachine
- 24 Tutorial
- 25 Pumps
- 26 Pumping Systems
- 27 Hydraulic Turbines: Pelton Turbine
- 28 Hydraulic Turbines: Reaction Turbines
- 29 Cavitation in Hydroturbomachines
- 30 Tutorial
- 31 Introduction to compressible flow
- 32 Steam and Gas Turbine : Introduction and classification
- 33 Steam and Gas Turbine : h-s Plots and velocity triangle
- 34 Tutorial