MODULE - 1:- BASICS OF HEAT TRANSFER
ü
DIFFERENCE BETWEEN HEAT
TRANSFER
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DIFFERENCE BETWEEN
THERMODYNAMICS AND HEAT TRANSFER
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MODES OF HEAT TRANSFER
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THERMAL CONDUCTIVITY
MODULE - 2:- ONE DIMENSIONAL STEADY STATE HEAT
CONDUCTION
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OBJECTIVES OF CONDUCTION
ANALYSIS
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GENERAL CONDUCTION
EQUATION
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BOUNDARY AND INITIAL
CONDITIONS
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HEAT DIFFUSION EQUATION
FOR A ONE DIMENSIONAL SYSTEM
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ONE DIMENSIONAL STEADY
STATE HEAT CONDUCTION
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SUMMARY OF ELECTRICAL
ANALOGY
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ONE - DIMENSIONAL STEADY
STATE CONDUCTION WITH INTERNAL HEAT GENERATION
MODULE - 3:- EXTENDED SURFACE HEAT TRANSFER
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INTRODUCTION
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EXTENDED SURFACE
ANALYSIS
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SOLUTION OF THE FIN
EQUATION
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FIN EFFECTIVENESS
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FIN EFFICIENCY
MODULE -4:- MULTI - DIMENSIONAL STEADY
STATE HEAT CONDUCTION
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INTRODUCTION
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GRAPHICAL METHOD:
CONDUCTION SHAPE FACTOR
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NUMERICAL METHODS
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THE FINITE DIFFERENCE
METHOD APPLIED TO HEAT TRANSFER PROBLEMS
MODULE - 5:- UN STEADY STATE HEAT CONDUCTION
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INTRODUCTION
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BIOT AND FOURIER NUMBERS
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LUMPED THERMAL CAPACITY
ANALYSIS
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NUMERICAL METHODS IN
TRANSIENT HEAT TRANSFER: THE FINITE VOLUME METHOD
MODULE - 6:- CONVECTION
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OBJECTIVES OF CONVECTION
ANALYSIS
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CLASSES OF CONVECTIVE
FLOWS
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HOW TO SOLVE A
CONVECTIVE PROBLEM
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FORCED CONVECTION:
EXTERNAL FLOW OVER FLAT PLATE
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FORCED CONVECTION
CORRELATIONS
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FREE CONVECTION
MODULE - 7:- HEAT EXCHANGERS
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WHAT ARE HEAT EXCHANGERS
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HEAT TRANSFER
CONSIDERATIONS
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FOULING
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BASIC HEAT EXCHANGER
FLOW ARRANGEMENTS
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LOG MEAN TEMPERATURE
DIFFERENCES
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APPLICATIONS FOR COUNTER
AND PARALLEL FLOWS
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MULTIPASS FLOW
ARRANGEMENTS
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EFFECTIVENESS – NTU
METHOD
MODULE - 8:- BOILING AND CONDENSATION
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BOILING: GENERAL
CONSIDERATIONS
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SPECIAL CASES
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THE BOILING CURVE
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POOL BOILING
CORRELATIONS
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CONDENSATION: GENERAL
CONSIDERATIONS
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LAMINAR FILM
CONDENSATION ON A VERTICAL WALL
MODULE - 9:- RADIATION HEAT TRANSFER
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DEFINITION
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STEFAN – BOLTZMAN LAW
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PLANK’S LAW
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SOME BASIC TERMS
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RELATIONSHIP BETWEEN
ABSORPTIVITY AND EMISSIVITY
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LAMBERT’S LAW
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LARGE ENCLOSURES
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