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- Basic Fluid Mechanics Concepts
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- Conservation of mass (EML5709, EML3015C & EML 3016C)
- Conservation of energy (EML5709, EML3015C & EML 3016C)
- Integral Navier-Stokes equations (EML 5709)
- Differential Navier-Stokes equations (EML5709, EML3015C & EML 3016C)
- Differential Euler equations (EML5709, EML3015C & EML 3016C)
- Conservative Navier-Stokes equations (EML 5709)
- Non-conservative Navier-Stokes equations (EML 5709)
- Constitutive equations (EML 5709)
- Boundary conditions (EML 5709)
- Streamlines, pathlines, and streaklines (EML 5709)
- Stream tubes and vortex tubes (EML 5709)
- Circulation and vorticity (EML 5709)
- Vorticity equations (EML 5709)
- Kinematics of vortex lines (EML 5709)
- Flow separation (EML5709)
- Fluid statics (EML3015C & EML 3016C)
- Dimensional analysis (EML3015C & EML 3016C)
- Ideal Fluid Flows
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- Bernoulli equations (EML 5709)
- Steady and unsteady
- Global and streamline
- Compressible and incompressible
- Applications (pitot tubes, carburettors, etcetera)
- Static and total pressures and their measurements
- Complex variables
- Manipulation of complex numbers (EML 5709)
- Polar form (EML 5709)
- Euler's formula (EML 5709)
- Standard functions (EML 5709)
- Roots (EML 5709)
- Conformal mapping (EML 5709)
- Bilinear transform (EML 5709)
- Contour integrals (EML 5709)
- Cauchy integral formula (EML 5709)
- Residu theorem (EML 5709)
- Two-dimensional potential flows (EML 5709)
- Conformal mapping (EML 5709)
- Blasius integral laws (EML 5709)
- Flow about airfoils (EML 5709)
- Viscous Incompressible Flows
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- Exact solutions to N-S equations (EML 5709)
- Low-Re number solutions
- Boundary layers (EML 5709)
- Pipe head loss (EML3015C & EML 3016C)
- Compressible Inviscid Flows
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- Linearized shock tubes including shocks
- Shock waves
- One-dimensional flow through nozzles
- Heat Conduction
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- Steady state heat conduction in one-dimension.
- Heat conduction in two or more independent variables.
- Unsteady heat conduction (lumped capacitance concept).
- Analytic Solutions to Problems of Forced Convection
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- Heat and momentum transfer for laminar and turbulent flow
inside tubes.
- Heat and momentum transfer for laminar and turbulent external
boundary layers.
- Heat Transfer by Free Convection
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- Analytical solutions of free convection past vertical
plane surfaces
- Mixed free and forced convection
- Thermodynamics (EML3100)
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- First law for a control volume
- Steady state steady flow assumptions
- Uniform state uniform flow assumptions
- Second law for a control volume
- Enthalpy, internal energy, entropy
- Specific heats
- Work and heat
- Applied Thermodynamics (EML3101)
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- Cycles (Rankine, Carnot, refrigeration, vapor compression,
Diesel, Otto) and applications
- Gas mixtures (water vapor and air mixture)
- Combustion (chemical balance, enthalpy of combustion, first
law for combusting systems)
Next: Solid Mechanics
Up: Listing of Exam
Previous: Mathematics
Author: Leon van Dommelen