Thermal Science (18AS41)
Vamsi Krishna Chowduru, Asst Prof
, Textbooks and References
Text Books:
1. Yunus A Cengel, Heat and Mass Transfer – A practical approach , 5th Edition, Tata McGraw
Hill Publishing Company Limited, 2007.
2. Incropera, Dewitt, Bergman, Lavine, Fundamentals of Heat and Mass Transfer, 6th Edition,
Wiley & Sons, 2007.
Reference Books:
1. Hegde, R.K, Heat and Mass Transfer – Basic approach , Sapna Book House, Bangalore.
, Unit –V
Convective Heat Transfer
• Convective Heat Transfer - Concept
• Thermal Boundary layer
• Energy Equation and heat transfer coefficient
• Dimensionless parameters in free and forced convective heat transfer
• Heat transfer correlations for flow over flat plates and through pipes
• Effects of turbulence.
, Convective Heat Transfer - Concept
• Heat transfer through a fluid
• Fluid is in motion
• Warmer and cooler when comes in contact.
• Higher the fluid velocity, higher the rate of heat transfer.
• Depends on the fluid properties
• Dynamic viscosity μ
• Thermal conductivity k
• Density ρ
• Specific heat cp
• Fluid velocity V
• Geometry
• Surface roughness of the solid surface
• Type of fluid flow
Vamsi Krishna Chowduru, Asst Prof
, Textbooks and References
Text Books:
1. Yunus A Cengel, Heat and Mass Transfer – A practical approach , 5th Edition, Tata McGraw
Hill Publishing Company Limited, 2007.
2. Incropera, Dewitt, Bergman, Lavine, Fundamentals of Heat and Mass Transfer, 6th Edition,
Wiley & Sons, 2007.
Reference Books:
1. Hegde, R.K, Heat and Mass Transfer – Basic approach , Sapna Book House, Bangalore.
, Unit –V
Convective Heat Transfer
• Convective Heat Transfer - Concept
• Thermal Boundary layer
• Energy Equation and heat transfer coefficient
• Dimensionless parameters in free and forced convective heat transfer
• Heat transfer correlations for flow over flat plates and through pipes
• Effects of turbulence.
, Convective Heat Transfer - Concept
• Heat transfer through a fluid
• Fluid is in motion
• Warmer and cooler when comes in contact.
• Higher the fluid velocity, higher the rate of heat transfer.
• Depends on the fluid properties
• Dynamic viscosity μ
• Thermal conductivity k
• Density ρ
• Specific heat cp
• Fluid velocity V
• Geometry
• Surface roughness of the solid surface
• Type of fluid flow