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Computational Fluid Dynamics I

IIT Madras, , Prof. Sreenivas Jayanti

Updated On 02 Feb, 19

Overview

Illustration of the CFD approach; CFD as an engineering analysis tool - Derivation of flow governing equations - Initial and boundary conditions; wellposedness - Turbulence modeling - Discretization of the governing equations using finite difference / volume methods - Concepts of consistency, stability and convergence - Template for the discretization of a generic unsteady transport equation - Spectral analysis of errors and TVD schemes - Solution of discretized linear algebraic equations: direct methods; classical iterative methods; convergence analysis - Advanced methods for the solution of discretized equations - Solution of coupled equations: methods for compressible flows - On evaluation of pressure in incompressible flows - Pressure-velocity coupling algorithms - Template for the solution of governing equations - Structured and unstructured grids - Structured grid generation methods - Unstructured grid generation methods - Benchmarking and calibration

Includes

Lecture 14: Consistency and stability analysis of the unsteady diffusion equation

4.1 ( 11 )


Lecture Details

Computational Fluid Dynamics by Prof. Sreenivas Jayanti, Department of Chemical Engineering, IIT Madras. For more details on NPTEL visit httpnptel.iitm.ac.in

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Sam

Excellent course helped me understand topic that i couldn't while attendinfg my college.

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Dembe

Great course. Thank you very much.

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