CH8301 Fluid Mechanics For Chemical Engineers Lecture Notes
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CH8301 FLUID MECHANICS FOR CHEMICAL ENGINEERS
UNIT I
Methods of analysis and description - fluid as a continuum –
Velocity and stress field - Newtonian and non-Newtonian fluids – Classification of fluid motion
UNIT II 12
Fluid statics – basic equation - equilibrium of fluid
element – pressure variation in a static fluid -
application to manometer – Differential analysis of fluid
motion – continuity, equation of motions,
Bernoulli equation and Navier- Stokes equation.
UNIT III 12
The principle of dimensional homogeneity – dimensional
analysis, Rayleigh method and the Pitheorem - non-dimensional action of the basic equations - similitude
- relationship between dimensional analysis and similitude - use of dimensional
analysis for scale up studies
UNIT IV 12
Reynolds number regimes, internal flow - flow through pipes
– pressure drop under laminar and turbulent flow conditions – major and minor losses; Line
sizing; External flows - boundary layer concepts, boundary layer thickness under laminar and
turbulent flow conditions- Flow over a sphere
– friction and pressure drag - flow through fixed and
fluidized beds.
UNIT V 12
Flow measurement - Constant and variable head meters;
Velocity measurement techniques; Types, characteristics and sizing of valves; Classification,
performance characteristics and sizing of pumps,
compressors and fans
TEXT BOOKS:
1. Noel de Nevers, “Fluid Mechanics for Chemical Engineers
“, Second Edition, McGraw-Hill, (1991).
2. McCabe W.L, Smith, J C and Harriot. P “Unit operations in
Chemical Engineering”, McGraw Hill, VII Edition, 2005
3. Munson, B. R., Young, D.F., Okiishi, T.H. “Fundamentals
of Fluid Mechanics”, 5th Edition“, John Wiley, 2006
REFERENCES:
1. White, F.M., “Fluid Mechanics “, IV Edition, McGraw-Hill
Inc., 1999.
2. James O Wilkes and Stacy G Bike, “Fluid Mechanics for
Chemical Engineers’ Prentice Hall PTR (International series in Chemical Engineering) (1999)
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