Applied Thermodynamics detail syllabus for Manufacturing Technology (Mt), 2019-20 scheme is taken from AKTU official website and presented for AKTU students. The course code (KME401), and for exam duration, Teaching Hr/Week, Practical Hr/Week, Total Marks, internal marks, theory marks, duration, and credits do visit complete sem subjects post given below.
For all other mt 4th sem syllabus for b.tech 2019-20 scheme aktu you can visit MT 4th Sem syllabus for B.Tech 2019-20 Scheme AKTU Subjects. The detail syllabus for applied thermodynamics is as follows.
Course Objectives:
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Unit I
Introduction to solid, liquid and gaseous fuels-Stoichiometry, exhaust gas analysis-First law analysis of combustion reactions-Heat calculations using enthalpy tables-Adiabatic flame temperature Chemical equilibrium and equilibrium composition calculations using free energy.Introduction and Otto, Diesel and Dual cycles.
Unit II
Vapour Power cycles: Vapor power cycles Rankine cycle with super heat, reheat and regeneration, exergy analysis. Rankine cycle, effect of pressure and temperature on Rankine cycle, Reheat cycle, Regenerative cycle, Feed water heaters, Binary vapour cycle, Combined cycles, Cogeneration.
Fuels and Combustion: Combustion analysis, heating values, air requirement, Air/Fuel ratio, standard heat of reaction and effect of temperature on standard heat of reaction, heat of formation, Adiabatic flame temperature.
Unit III
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Unit IV
Steam and Gas Nozzles: Flow through Convergent and convergent-divergent nozzles, variation of velocity, area and specific volume, choked flow, throat area, Nozzle efficiency, Off design operation of nozzle, Shock waves stationary normal shock waves, Effect of friction on nozzle, Super saturated flow.
Steam Turbines: Classification of steam turbine, Impulse and Reaction turbines, Staging, Stage and Overall efficiency, reheat factor, Bleeding, Velocity diagram of simple and compound multistage impulse and reaction turbines and related calculations, work done, efficiencies of reaction, Impulse reaction turbines, state point locus, Losses in steam turbines, Governing of turbines, Comparison with steam engine.
Unit V
Gas Turbine: Gas turbine classification, Brayton cycle, Principles of gas turbine, Gas turbine cycles with inter cooling, reheat and regeneration and their combinations, Stage efficiency, Polytropic efficiency. Deviation of actual cycles from ideal cycles.
Jet Propulsion: Introduction to the principles of jet propulsion, Turbojet and turboprop engines andtheir processes, Principle of rocket propulsion, Introduction to Rocket Engine. Reciprocating compressors, staging of reciprocating compressors, optimal stage pressureratio, effect of inter cooling, minimum work for multistage reciprocating compressors.
Course Outcomes:
- After completing this course, the students will get a good understanding of various practical power cycles and heat pump cycles.
- They will be able to analyze energy conversion in various thermal devices such as combustors, air coolers, nozzles, diffusers, steam turbines and reciprocating compressors.
- They will be able to understand phenomena occurring in high speed compressible flows.
Books and References:
- Basic and Applied Thermodynamics by P.K. Nag, mcgraw hill india.
- Applied thermodynamics by Onkar Singh, New Age International.
- Applied Thermodynamics for Engineering Technologists by Eastop, Pearson Education.
- Applied Thermodynamics by Venkanna And Swati, PHI.
- Sonntag, R. E, Borgnakke, C. and Van Wylen, G. J., 2003, 6th Edition, Fundamentals of Thermodynamics, John Wiley and Sons.
- Jones, J. B. and Duggan, R. E., 1996, Engineering Thermodynamics, Prentice-Hall of India.
- Moran, M. J. and Shapiro, H. N., 1999, Fundamentals of Engineering Thermodynamics, John Wiley and Sons.
- Theory of Stream Turbine by WJ Kearton.
For detail syllabus of all other subjects of B.Tech Mt, 2019-20 scheme do visit Mt 4th Sem syllabus for 2019-20 scheme.
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