Combustion. Instructor: Prof. S. R. Chakravarthy, Department of Aerospace Engineering, IIT Madras.

FREE
This course includes
Hours of videos

1416 years, 6 months

Units & Quizzes

51

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Certificate of Completion

This course deals with topics in combustion, the process of burning: Review of thermodynamics, Chemical kinetics, Mass transfer definitions - Fick's law, Conservation equations, Schvab-Zeldovich formulation, Rankine-Hugoniot relations, Laminar premixed flames, Laminar diffusion flames, Partially premixed flames, Introduction to turbulent flames, Solid propellant combustion, Spray combustion, and Combustion instabilities. (from nptel.ac.in)

Course Currilcum

    • Lecture 01 – Introduction Unlimited
    • Lecture 02 – Chemical Reactions, Heat of Reactions and Formation Unlimited
    • Lecture 03 – Sensible Enthalpy and Adiabatic Flame Temperature Unlimited
    • Lecture 04 – Dissociation of Products, Role of Pressure Unlimited
    • Lecture 05 – Numerical Calculation of AFT, Chemical Kinetics Unlimited
    • Lecture 06 – Chemical Kinetics Unlimited
    • Lecture 07 – Equilibrium Reactions, Global Kinetic, Order of Reaction Unlimited
    • Lecture 08 – Reduced Chemistry, Steady State Approximation Unlimited
    • Lecture 09 – Steady State Approximation, Partial Equilibrium Approximation Unlimited
    • Lecture 10 – Partial Equilibrium Approximation, Chemical Explosions Unlimited
    • Lecture 11 – Combining Chemical and Thermal Processes 1 Unlimited
    • Lecture 12 – Combining Chemical and Thermal Processes 2 Unlimited
    • Lecture 13 – Combining Chemical and Thermal Processes 3 Unlimited
    • Lecture 14 – Combining Chemical and Thermal Processes 4 Unlimited
    • Lecture 15 – Mass and Molar Diffusion, Fick’s Law Unlimited
    • Lecture 16 – Conservation Equations for Multi-Component Mixtures Unlimited
    • Lecture 17 – Multi-Component Diffusion Equation Unlimited
    • Lecture 18 – Multi-Component Momentum Equation Unlimited
    • Lecture 19 – Energy Equation Unlimited
    • Lecture 20 – One Dimensional Steady Flow Unlimited
    • Lecture 21 – Schvab-Zeldovich Formulation Unlimited
    • Lecture 22 – Schvab-Zeldovich Formulation (cont.) Unlimited
    • Lecture 23 – Rankine-Hugoniot Relations 1 Unlimited
    • Lecture 24 – Rankine-Hugoniot Relations 2 Unlimited
    • Lecture 25 – Rankine-Hugoniot Relations 3 Unlimited
    • Lecture 26 – Velocity, Temperature and Entropy Variation along Hugoniot Curve Unlimited
    • Lecture 27 – Laminar Premixed Flames Unlimited
    • Lecture 28 – Laminar Premixed Flames: Corrections Unlimited
    • Lecture 29 – Laminar Premixed Flames: Rigorous Analysis Unlimited
    • Lecture 30 – Laminar Premixed Flames: Rigorous Analysis (cont.) Unlimited
    • Lecture 31 – Flame Speed Dependencies, G-Equation Unlimited
    • Lecture 32 – Bunsen Burner Unlimited
    • Lecture 33 – Bunsen Burner (cont.) Unlimited
    • Lecture 34 – Flame Stabilisation Unlimited
    • Lecture 35 – Flame Stabilisation (cont.) Unlimited
    • Lecture 36 – Ignition Unlimited
    • Lecture 37 – Burke-Schumann Problem 1 Unlimited
    • Lecture 38 – Burke-Schumann Problem 2 Unlimited
    • Lecture 39 – Burke-Schumann Problem 3 Unlimited
    • Lecture 40 – Flame Structure Unlimited
    • Lecture 41 – Mixture Fraction Formulation Unlimited
    • Lecture 42 – Mixture Fraction Formulation (cont.) Unlimited
    • Lecture 43 – Droplet Burning Unlimited
    • Lecture 44 – Droplet Burning (cont.) Unlimited
    • Lecture 45 – Spray Combustion Unlimited
    • Lecture 46 – Spray Combustion (cont.) Unlimited
    • Lecture 47 – Turbulent Combustion Unlimited
    • Lecture 48 – Turbulent Combustion (cont.) Unlimited
    • Lecture 49 – Combustion Instabilities Unlimited
    • Lecture 50 – Detonations Unlimited
    • Lecture 51 – Detonation Wave – ZND Structure Unlimited