Hydrostatics. Integral Formulation of Fluid Flow, Control Volume, Continuity Equation, Momentum Equation in Integral Form. Differential Formulation of Fluid Flow, Flow Kinematics, Continuity Equation, Acceleration, Stress - Rate of Strain Relation. Newtonian Fluid. Differential Momentum Equation. Navier-stokes Equations, Boundary Conditions, Exact Solutions# Couette and Poiseuille Flows. Bernoulli Equation, Energy Equation, Flow Measurement, Flow in Pipes, Laminar And Turbulent, Friction Losses, Pipe Systems, Potential Flow, Basic Solutions, Boundary Layers.

Faculty: Civil and Environmental Engineering
|Undergraduate Studies

Pre-required courses

(14104 - Strength of Materials 1 and 104004 - Differential and Integral Calculus 2 and 104019 - Linear Algebra M and 114051 - Physics 1) or (14104 - Strength of Materials 1 and 104004 - Differential and Integral Calculus 2 and 104019 - Linear Algebra M and 114077 - Physics 1l) or (15007 - Applied Mechanics 1 and 104004 - Differential and Integral Calculus 2 and 104019 - Linear Algebra M and 114051 - Physics 1) or (15007 - Applied Mechanics 1 and 104004 - Differential and Integral Calculus 2 and 104019 - Linear Algebra M and 114077 - Physics 1l)


Parallel course

104131 - Ordinary Differential Equations/h


Course with no extra credit

14211 - Fluid Mechanics 14955 34013 - Fluid Mechanics 1 54203 - Principles of Chemical Engineering 1m 54480 - Principles of Chemical Engineering 1h 74133 315039 - Momentum


Semestrial Information