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Mod-01 Lec-18 Rankine cycle, Brayton cycle, Stirling and Ericsson cycles
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Classroom Contents
Introduction to Aerospace Propulsion
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- 1 Mod-01 Lec-01 Course Intro & Historical development of flights
- 2 Mod-01 Lec-02 Early development of aircraft propulsive devices
- 3 Mod-01 Lec-03 Development of Jet propulsion for aircraft
- 4 Mod-01 Lec-04 Introduction to thermodynamics
- 5 Mod-01 Lec-05 Quasi-static processes, zeroth law of thermodynamics
- 6 Mod-01 Lec-06 Specific heats at constant pressure and volume Work and heat transfers
- 7 Mod-01 Lec-07 Tutorial
- 8 Mod-01 Lec-08 First law of thermodynamics for closed systems
- 9 Mod-01 Lec-09 First law of thermodynamics for open systems/flow processes
- 10 Mod-01 Lec-10 Second law of thermodynamics, heat engines
- 11 Mod-01 Lec-11 Reversible and irreversible processes, concept of entropy
- 12 Mod-01 Lec-12 Increase of entropy principle
- 13 Mod-01 Lec-13 Tutorial
- 14 Mod-01 Lec-14 Carnot cycle, Carnot principle, thermodynamic temperature scale
- 15 Mod-01 Lec-15 Exergy, availability and second law efficiency
- 16 Mod-01 Lec-16 Tutorial
- 17 Mod-01 Lec-17 Gas and vapour power cycles, Otto cycle, Diesel cycle, Dual cycle
- 18 Mod-01 Lec-18 Rankine cycle, Brayton cycle, Stirling and Ericsson cycles
- 19 Mod-01 Lec-19 Thermodynamic property relations, Jacobean
- 20 Mod-01 Lec-20 Tutorial
- 21 Mod-01 Lec-21 Properties of gas and vapour mixtures
- 22 Mod-01 Lec-22(A) One-dimensional compressible flows, isentropic flows
- 23 Mod-01 Lec-22(B) Flows with friction and heat transfer, normal and oblique shocks