Course Plan for heat and mass transfer

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Sl. No. 1 2 3 4

Hrs Planned 1 2 3-4 5-6

Topic(s) UNIT-I CONDUCTION Mechanism of heat transfer-conduction, convection and radiation Fourier law of conduction-general differential equation of heat conductionCartesian coordinate General Differential equation of Heat Conduction-Cylindrical coordinate General Differential equation of Heat Conduction- spherical coordinate One Dimensional Steady State Heat Conduction-Conduction through Plane wall and Composite Wall One Dimensional Steady State Heat Conduction-Conduction through Plane cylinder and Composite cylinder One Dimensional Steady State Heat Conduction-Conduction through sphere and Composite sphere Conduction with Internal Heat Generation

T / R* Book T T T R

Book No. 1 1 1 5

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2-3 13-30 70-76 3.22-3.23

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7-8

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87-89

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9-10

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76

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104-113 69-70 89-104 117-127 127-159

8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25

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Extended Surfaces T 1 Unsteady Heat Conduction- Lumped 16 T 1 234-247 analysis Unsteady Heat Conduction- Use of 17 T 1 234-247 Heislers Chart UNIT-2 CONVECTION Basic Concepts- Heat Transfer 18 T 1 247-255 Coefficients- Boundary Layer Concept Types of Convection, Forced 19 T 1 255-259 Convection dimensional analysis 20-21 Flow over Plates T 1 259-261 22-23 T 1 259-261 Flow over Cylinders and Spheres Internal flow through circular pipes24-25 T 1 79-83 Laminar and Turbulent 26 Flow through non circular cross section T 1 79-83 Natural convection dimensional 27-28 T 1 187-191 analysis-Vertical Plate, Horizontal Plate, Inclined Plate Natural convection- Cylinders and 29 T 1 191-197 spheres UNIT- 3 PHASE CHANGE HEAT TRANSFER AND HEAT EXCHANGERS 30 Nussets theory of conduction T 1 197-203 Pool boiling, flow boiling, correlations in 31-32 T 1 203-211 boiling and condensation Types of heat exchanger and LMTD 33 T 1 203-211 method for parallel and counter Flow LMTD method for multi pass 34 T 1 215-216 configuration 35-36 T 1 216-223 Effectiveness method analysis Fouling factor and its effects on overall 37 T 1 223-228 heat transfer coefficient UNIT- 4 RADIATION Radiation fundamentals38 T 1 230-280 Electromagnetic spectrum, Blackbody radiation Spectral emissive power and wien’s 39 T 1 283-296 displacement law, Stefan Boltzmann law Absorption, reflection and 40-41 T 1 296-311 transmission,radiosity,Kirchoffs law of radiation Shape factors and radiations exchange 42-43 T 1 316-323 between black surfaces

* T  Text Book / R  Reference Book

ST.MOTHER THERASA ENGINEERING COLLEGE Department of Mechanical Engineering
COURSE CONTENT & LESSON PLAN Subject Code : ME 2251 Branch Batch : Mechanical : 2011- 2015 Subject name Year / Sem Course Teacher : HEAT AND MASS TRANSFER : II / IV : L.CHINNADURAI

______________________________________________________________________ TEXT BOOKS 1. Sachdeva R C, “Fundamentals of Engineering Heat and Mass Transfer” New Age International, 1995. 2. Frank P. Incropera and David P. DeWitt, “Fundamentals of Heat and Mass Transfer”, John Wiley and Sons, 1998. REFERENCE BOOKS

1. Yadav R “Heat and Mass Transfer” Central Publishing House, 1995. 2. Ozisik M.N, “Heat Transfer”, McGraw-Hill Book Co., 1994. 3. Nag P.K, “ Heat Transfer”, Tata McGraw-Hill, New Delhi, 2002 4. Holman J.P “Heat and Mass Transfer” Tata McGraw-Hill, 2000. 5. Kothandaraman C.P “Fundamentals of Heat and Mass Transfer” New Age International, New Delhi, 1998

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