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33 MECHANICAL ENGGINEERING (PRODUCTION)
Duration : 03 Year
Eligibility : 10th with Science & Mathematics
Intake : 25/40/60(As approved by AICTE/State Govt.)
Pattern of the Examination : Semester System
Assessment Type : The assessment will we carry out through credit point system/Learning Based Out comes
Theory & Practical Ratio : 50: 50
Industrial Training: Included after IInd Semester
Ecology & Environment : As pe Government Directions a subject named Environmental Science & Energy Management has been included.
Entrepreneurship Development: A subject on Entrepreneurship Development has been incorporated after IInd Semester.
General Proficiency : A provision of 6 periods per week has been made. It Included of various cocurricular activities like games, hobby clubs, seminars, declamation contests, extension lectures, NCC, NSS, cultural activities and discipline etc.

Syllabus


Paper Code :
143004
Paper Name :
THERMODYNAMICS

Introduction, thermodynamic system, surrounding, boundary, state, universe,thermodynamic systems– closed, open, isolated, adiabatic, homogeneous andheterogeneous, macroscopic and microscopic, properties of system – intensive and extensive, thermodynamic equilibrium, quasi – static process, reversible andirreversible processes, concept of work and heat, equality of temperature, Zeroth law of thermodynamics, definition of properties likepressure, volume, temperature, enthalpy, internalenergy, Simple numerical problems.

Definition of gases, concept of perfect gas,explanation of perfect gas laws – Boyle’s law, Charle’s law, Avagadro’s law, Universal gas constant, Characteristic gas equations (Simple numerical problems) Specific heat at constant pressure, specific heat at constant volume of gas.

Types of thermodynamic processes – isochoric, isobaric, isothermal, hyperbolic, isentropic, polytropic and throttling processes, equations representing the processes Derivation of work done in various processes change in internal energy.

Law of conservation of energy, first law of thermodynamics (Joule’sexperiment), Application of first law of thermodynamics to non-flow systems –Constant volume, constant pressure, Adiabatic and polytropic processes, steadyflow energy equation, Application of steady flow energy equation to turbines, pump, boilers, compressors, nozzles, evaporators. Limitations. Heat source and heat sinks, statement of second laws of thermodynamics: Kelvin Planck’s statement, Classius statement, equivalence of statements, Perpetual motion Machine of first and second kind, Carnot engine.

Formation of steam and related terms, thermodynamics properties of steam, steam tables, internal latent heat, internal energy of stream, T- s diagrams, Mollier diagram (H – S Chart), Expansion of steam,Hyperbolic, reversible adiabatic and throttling processes Quality of steam (dryness fraction), measurement of dryness fraction, throttling calorimeter.

Classification of steam Boilers, Working principle of Simple vertical boilers & babcock and Wilcox boiler, boiler mountings and accessories

Function and use of steam turbine, Steam nozzles- types and applications, Steam turbines, impulse, reaction, Throttle governing of steam turbines



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