Heat & Mass Transfer
- An introduction to the fundamentals of heat and mass transfer and its applications,
- Introduction to general heat transfer mechanisms, energy conservation equation in open and closed control volumes
- Fundamentals of mass transfer, mass conservation equation, mass transfer mechanisms
- Conductive heat transfer, thermal properties of matter, thermal conductivity coefficient, boundary and initial conditions
- Mass transfer by diffusive, diffusion coefficient, boundary and initial conditions, similarity of mass and heat transfer phenomena
- Steady state conduction in one dimension, flat wall geometry, thermal resistances
- Steady state Conduction in One Dimension, Radial Systems
- Steady state mass transfer by diffusion, flat wall geometry and radial systems
- Steady state one-dimensional heat and mass transfer with the term production and consumption, biological heat transfer
- Transient heat transfer, compact capacity method and validation of the method
- Transient heat transfer considering spatial effects, Transient mass transfer considering spatial effects
- Convection heat transfer, velocity, temperature, and concentration boundary layers, local and average convection coefficients
- The Boundary layer equations, normalized boundary layer equations, boundary layer analogy, physical significance of dimensionless parameters
- Heat and mass transfer equations in external flow (flow over flat plates, cylinders, and spheres)
- Heat and mass transfer equations in internal flow (Laminar and turbulent internal flow)