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Engineering - ENGR 315

Heat Transfer

  • Introduce the concepts - Conduction Heat Transfer, Thermal Conductivity, Convection Heat Transfer and Radiation Heat Transfer
  • Define the Dimensions and Units for various parameters
  • Analyze the Plane Wall Systems
  • Calculate the Insulation and R values
  • Analyze the Radial Systems
  • Determine the Overall Heat Transfer Coefficient
  • Define the Critical Thickness of Insulation
  • Introduce the Heat-Source Systems
  • Analyze Plate and Cylindrical Systems with Heat Sources
  • Apply the Conduction-Convection Principles to Fins
  • Apply the Numerical Method of Analysis
  • Introduce the Gauss-Siedel Iteration
  • Introduce Lumped-Heat Capacity System
  • Determine the Transient Heat Flow in a Semi-Infinite Solid
  • Apply Convection Boundary Conditions
  • Analyze the Multidimensional Systems
  • Define Viscous and Inviscid Flow
  • Analyze Laminar Boundary Layer on a Flat Plate
  • Derive Energy Equation of the Boundary Layer
  • Introduce the Thermal Boundary Layer
  • Establish The Relationship between Fluid Friction and Heat Transfer
  • Discuss the Turbulent-Boundary Layer Heat Transfer
  • Analyze the Heat Transfer in Laminar Tube Flow
  • Introduce Turbulent Flow in a Tube
  • Analyze External Flow – Heat Transfer over Flat Plates
  • Analyze Internal Flow – Heat Transfer in Tubes
  • Solve probelms on Internal Flow
  • Discuss the Empirical Relations for Pipe and Tube Flow
  • Analyze Flow across Cylinders, Spheres
  • Analyze Flow in Tube banks
  • Discuss the Radiation Properties
  • Determine the Radiation Shape Factor
  • Analyze the Heat Exchange between Non-black Bodies
  • Introduce Infinite Parallel Surfaces
  • Introduce the Types of Heat Exchangers
  • Discuss the Fouling Factors
  • Determine the Overall Heat-Transfer Coefficient
  • Introduce the LMTD Method for Heat Exchanger Design
  • Introduce the NTU Method for Heat Exchanger Design
  • Design the Heat Exchangers based on specifications

Prepared by Dr. Pankaj Chandra