15 Courses
Modified 10 January 2022
Modified 25 July 2022
Course Description:
The course could be would basically aimed at introducing the fundamental theory required to model continuum conduction and radiative heat transfer. The course would introduce the basic theory and dwell on the basic framework required for steady and transient analytical solution of conduction heat transfer. Theoretical modelling of radiative heat transfer in non-participating media would be discussed. Treatment of radiating heat transfer in participating media would be discussed and solution to one dimensional plane parallel participating media with only radiation and combine conduction and radiation would also be discussed.
Course Objectives:
1. To teach analytical solution to steady and transient conduction in single and multi-dimension.
2. To teach modelling and solving problems for heat transfer in non-participating media
3. To teach simplified treatment of radiation in participating media
Course Outcomes:
1. The student would become conversant with analytical solution of steady and unsteady heat conduction for various cases.
2. The students would get a working knowledge to handle problems using the concept of enclosure radiation exchange.
3. The students would get a familiarity with Integral equations.
4. The students would be equipped with the knowledge to model radiative heat transfer in participating media.
This course intended is to develop insight on thermodynamics and fluid dynamics of high-speed flow of gases and associated effects. Students will develop the ability to analyse one dimensional flows such as isentropic flow with area change, normal shocks, Fanno flow and Rayleigh flow in the first part of the course. Various two dimensional flow situations and linearized flow analysis will be dealt in the second part.
Prerequisite :- Engineering Thermodynamics; Fluid mechanics (UG level courses)