Friday, March 28, 2014

TE7101 - Advanced Heat Transfer Syllabus - Anna University

Looking for Anna University First Semester syllabus for M.E IC Engines? Here's available the first semester syllabus regulation 2013 for the "Advanced Heat Transfer". Read On!

TE7101                   ADVANCED HEAT TRANSFER          L T P C                3 1 0 4

AIM:
The course is intended to build up necessary fundamentals for the understanding of the physical
behavior of conduction and convection.

OBJECTIVES:
To develop the ability to use the heat transfer concepts for various applications like finned systems, turbulence flows, high speed flows.
To analyse the thermal analysis and sizing of heat exchangers and to learn the heat transfer
coefficient for compact heat exchanges.
To achieve an understanding of the basic concepts of phase change processes and mass
transfer.

UNIT I CONDUCTION AND RADIATION HEAT TRANSFER 10
One dimensional energy equations and boundary condition - three-dimensional heat conduction
equations - extended surface heat transfer - conduction with moving boundaries - radiation in gases
and vapour Gas radiation and radiation heat transfer in enclosures containing absorbing and emitting
media – interaction of radiation with conduction and convection.

UNIT II TURBULENT FORCED CONVECTIVE HEAT TRANSFER 10
Momentum and energy equations - turbulent boundary layer heat transfer - mixing length concept -
turbulence model – k Є model - analogy between heat and momentum transfer – Reynolds, Colburn,
Prandtl turbulent flow in a tube - high speed flows.

UNIT III PHASE CHANGE HEAT TRANSFER AND HEAT EXCHANGER 8
Condensation with shears edge on bank of tubes - boiling – pool and flow boiling - heat exchanger -Є
– NTU approach and design procedure - compact heat exchangers.

UNIT IV NUMERICAL METHODS IN HEAT TRANSFER 9
Finite difference formulation of steady and transient heat conduction problems – discretization
schemes – explicit - Crank Nicolson and fully implicit schemes - control volume formulation -steady
one-dimensional convection and diffusion problems - calculation of the flow field – SIMPLER
Algorithm.

UNIT V MASS TRANSFER AND ENGINE HEAT TRANSFER CORRELATION 8
Mass transfer - vaporization of droplets - combined heat and mass transfers - heat transfer
correlations in various applications like I.C. engines - compressors and turbines.

T=15, TOTAL: 60 PERIODS

OUTCOME: On successful completion of this course the student will be able to apply the law of
thermodynamics to engines.

REFERENCES
1. Yunus A.Cengal, Heat and Mass Transfer – A practical Approach, 3rd edition, Tata McGraw - Hill,
2007.
2. Holman.J.P, Heat Transfer, Tata Mc Graw Hill, 2002.
3. Ozisik. M.N., Heat Transfer – A Basic Approach, McGraw-Hill Co., 1985
4. Incropera F.P. and DeWitt. D.P., Fundamentals of Heat & Mass Transfer, John Wiley & Sons,
2002.
5. Nag.P.K, Heat Transfer, Tata McGraw-Hill, 2002
6. Ghoshdastidar. P.S., Heat Transfer, Oxford University Press, 2004
7. Yadav, R., Heat and Mass Transfer, Central Publishing House, 1995.
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