Fluid Dynamic Modules
Module |
Topic |
Sub-topic |
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0 |
Introduction |
0A |
Introduction to Articulate |
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0B |
Introduction to Fluid Dynamics |
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1 |
Properties |
1A |
Pressure, density, specific weight |
|
1B |
Viscosity and shear stress |
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2 |
Fluid Statics |
2A |
Pressure in a fluid at rest |
|
2B |
Manometers |
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2C |
Forces in a fluid at rest |
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2D |
Pressure prism |
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2E |
Buoyancy |
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3 |
Bernoulli Eq |
3A |
Derivation of Bernoulli equation |
|
3B |
Applications of Bernoulli equation |
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5 |
Reynolds Transport |
5A |
System and control volume ideas |
|
5B |
Reynolds Transport Theorem derivation |
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6 |
Conservation of Mass |
6A |
Control volumes and mass flows |
|
6B |
Mass flow rates and mass storage |
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6C |
Continuity equation and average velocity |
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7 |
Linear Momentum |
7A |
Derivation and application for forces |
|
7B |
Absolute and relative vel., moving CV |
http://fluidmodules.engr.wisc.edu/module_7b_NEW/launcher.html |
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8 |
Angular Momentum |
8A |
Derivation and application |
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9 |
Conservation of Energy |
9A |
Energy equation for fluids |
|
9B |
Bernoulli equation as an energy equation |
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9C |
Applications of energy equation |
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10 |
Nondimensional |
10A |
Definition, development, and use of nondimensional parameters |
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10B |
Common groups, modeling, similitude |
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11 |
Internal Flow |
11A |
Introduction to viscous flow in pipes |
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11B |
Laminar flow, Navier Stokes equations |
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11C |
Pressure drops in pipes |
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11D |
Piping systems, pump and turbine power |
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12 |
External Flow |
12A |
Laminar and turbulent boundary layers |
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12B |
Governing equations, Blasius solution |
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12C |
Drag on objects |
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12D |
Lift on objects |
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13 |
Open Channel Flow |
13A |
Flow regimes |
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13B |
Energy and head loss, hydraulic jumps |
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13C |
Flow rates in open channels |