Aerospace - Combustion

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Aerospace - Combustion

Combustion is a high-temperature exothermic redox chemical reaction between a fuel (the reductant) and an oxidant, usually atmospheric oxygen, that produces oxidized, often gaseous products, in a mixture termed as smoke. Combustion in a fire produces a flame, and the heat produced can make combustion self-sustaining.

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workload

41h

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7 days

created on

07/12/2017

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Syllabus:

Aula #1 - Mod-01 Lec-01 Introduction
Aula #2 - Mod-01 Lec-02 Chemical Reactions, Heats of Reaction and Formation
Aula #3 - Mod-01 Lec-03 Sensible Enthalpy and Adiabatic Flame Temperature
Aula #4 - Mod-01 Lec-04 Dissociation of Products, Role of Pressure
Aula #5 - Mod-01 Lec-05 Numerical Calculation of Adiabatic Flame Temperature, Chemical Kinetics 1
Aula #6 - Mod-02 Lec-06 Chemical Kinetics 2
Aula #7 - Mod-02 Lec-07 Equilibrium Reactions, Global Kinetics, Order of Reaction
Aula #8 - Mod-02 Lec-08 Reduced Chemistry, Steady State Approximation
Aula #9 - Mod-02 Lec-09 Steady State Approximation, Partial Equilibrium Approximation
Aula #10 - Mod-02 Lec-10 Partial Equilibrium Approximation, Chemical Explosions
Aula #11 - Mod-02 Lec-11 Combining Chemical and Thermal Processes 1
Aula #12 - Mod-02 Lec-12 Combining Chemical and Thermal Processes 2
Aula #13 - Mod-02 Lec-13 Combining Chemical and Thermal Processes 3
Aula #14 - Mod-02 Lec-14 Combining Chemical and Thermal Processes 4
Aula #15 - Mod-03 Lec-15 Mass and Molar Diffusion, Fick's Law
Aula #16 - Mod-08 Lec-16 Conservation Equations for Multi-Component Mixtures
Aula #17 - Mod-08 Lec-17 Multi-Component Diffusion Equation
Aula #18 - Mod-08 Lec-18 Multi-Component Momentum Equation
Aula #19 - Mod-08 Lec-19 Energy Equation
Aula #20 - Mod-08 Lec-20 One Dimensional Steady Flow
Aula #21 - Mod-05 Lec-21 Schvab-Zeldovich Formulation 1
Aula #22 - Mod-05 Lec-22 Schvab-Zeldovich Formulation 2
Aula #23 - Mod-06 Lec-23 Rankine-Hugoniot Relations 1
Aula #24 - Mod-06 Lec-24 Rankine-Hugoniot Relations 2
Aula #25 - Mod-06 Lec-25 Rankine-Hugoniot Relations 3
Aula #26 - Mod-06 Lec-26 Velocity, Temperature and Entropy Variation along Hugoniot Curve
Aula #27 - Mod-07 Lec-27 Laminar Premixed Flames
Aula #28 - Mod-07 Lec-28 Laminar Premixed Flames - Corrections
Aula #29 - Mod-07 Lec-29 Laminar Premixed Flames - Rigorous Analysis 1
Aula #30 - Mod-07 Lec-30 Laminar Premixed Flames - Rigorous Analysis 2
Aula #31 - Mod-07 Lec-31 Flame Speed Dependencies, G-Equation
Aula #32 - Mod-07 Lec-32 Bunsen Burner 1
Aula #33 - Mod-07 Lec-33 Bunsen Burner 2
Aula #34 - Mod-07 Lec-34 Flame Stabilisation 1
Aula #35 - Mod-07 Lec-35 Flame Stabilisation 2
Aula #36 - Mod-07 Lec-36 Ignition
Aula #37 - Mod-08 Lec-37 Burke-Schumann Problem 1
Aula #38 - Mod-08 Lec-38 Burke-Schumann Problem 2
Aula #39 - Mod-08 Lec-39 Burke-Schumann Problem 3
Aula #40 - Mod-09 Lec-40 Flame Structure
Aula #41 - Mod-09 Lec-41 Mixture Fraction Formulation 1
Aula #42 - Mod-09 Lec-42 Mixture Fraction Formulation 2
Aula #43 - Mod-10 Lec-43 Droplet Burning 1
Aula #44 - Mod-10 Lec-44 Droplet Burning 2
Aula #45 - Mod-10 Lec-45 Spray Combustion 1
Aula #46 - Mod-10 Lec-46 Spray Combustion 2
Aula #47 - Mod-11 Lec-47 Turbulent Combustion 1
Aula #48 - Mod-11 Lec-48 Turbulent Combustion 2
Aula #49 - Mod-12 Lec-49 Combustion Instabilities
Aula #50 - Mod-13 Lec-50 Detonations
Aula #51 - Mod-13 Lec-51 Detonation Wave - ZND Structure
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Modules & lessons

Module 1: Aerospace - Combustion

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