MEC 205 D. Name of assessment Marks Topics Tentative date Duration Basic concepts, first law of thermodynamics, steady flow energy equation.
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1 Faculty of Engineering & Technology, SRM University, Kattankulathur School of Mechanical Engineering Department of Automobile Engineering Course plan Date : 04 July 2012 Course code : ME 0201 Course title : Thermodynamics Semester : 3 Academic year Semester Section details: : / Odd (June 2012 to November 2012) Section Class Room no Name AUTO A MB 21 Mr.D.Boopathi AUTO B MB 22 Mr.S.Sunil AUTO C MB 36 Mr.S.Devanand Room No. D B B Details of Faculty member Intercom No. e mail id 7865 boopathi.d@ktr.srmuniv.ac.in 7865 sunil.s@ktr.srmuniv.ac.in 7865 devanand.s@ktr.srmuniv.ac.in Student contact time Direct assessment details: Name of assessment Marks Topics Tentative date Duration Cycle test I 10 Basic concepts, first law of thermodynamics, steady flow energy equation minutes Surprise test 05 Kelvin plank, Clausius statement minutes Cycle test II 10 First law, second law, entropy and availability minutes Model examination 20 Entire Syllabus hours End semester examination 50 Entire Syllabus hours Attendance 05 N/A
2 L T P C ME 0201 Thermodynamics Prerequisite Nil Program Educational Objectives Student outcomes 1. Apply / improve their knowledge in basic sciences for excelling in various disciplines of Mechanical Engineering with the emphasis on Thermal Engineering. 2. Enhance professional practice to meet the global standards with ethical and social responsibility. 3. Solve industrial, social, and environmental problems with modern engineering tools. 4. Develop skills to work in teams, think intellectually and pursue life long learning. (a) An ability to apply knowledge of mathematics, science, and engineering (e) An ability to identify, formulate, and solve engineering problems Course designed by 1 Student outcome Department of Automobile Engineering a b c d e f g h i j K 2 Category GENERAL (G) BASIC SCIENCES ENGINEERING SCIENCES AND TECHNICAL ART (E) PROFESSIONAL SUBJECTS (P) 3 4 Broad area (for professional courses only, i.e. under P category) Course Coordinator Manufacturing Design Thermal General Mr.S.Sunil
3 LESSON PLAN S.No BASIC CONCEPTS OF THERMODYNAMICS References ( code of the Text / Reference books) 1 Macroscopic and Microscopic aspects. System, types of systems and surroundings. T1 2 Forms of energy T1 3 Properties of substances, state and equilibrium. T1 4 Quasi static process, zero th law of thermodynamics. T1 5 Heat a path function T1 6 Work a path function, expression for work done. T1 7 First law of thermodynamics and its limitations. T1 8 Non Flow Processes T1 9 Flow processes, steady flow energy equation. T1 10 Applications of steady flow energy equation. T1 11 Tutorial I Non flow processes, calculation for work done. T1 12 Tutorial II Steady flow energy equation. T1 SECOND LAW OF THERMODYNAMICS 13 Kelvin Plank Statement. T1 14 Clausius statement. T1 15 Cyclic heat engines. T1 16 Heat reservoirs. T1 17 Refrigerator and heat pump. T1 18 Equivalence of Kelvin Plank Statements T1 19 Reversibility T1 20 Irreversibility. T1 21 Tutorial I Efficiency of heat engine, Cop of heat pump and refrigerator. T1 22 Tutorial II Combination of devices in series and parallel. T1
4 ENTROPY AND AVAILABILITY 23 Clausius theorem 24 Clausius inequality 25 Entropy principle, Property Diagrams ( h s, T s),t2 26 Entropy generation in a closed system. 27 Entropy generation in an open system, Third law of thermodynamics. 28 Entropy change in ideal gases.,t2 29 Availability applied to flow and non flow process. 30 Tutorial I Change in entropy and internal energy. 31 Tutorial II Simple problems in available energy. THERMODYNAMIC RELATIONS 32 Helmholtz and Gibbs free energy, simple mathematical Relations. 33 Maxwell s relations Derivation. 34 Relation between C p and C v 35 General relations for dh, du, ds. 36 Joule Thomson coefficient. 37 Dalton s law of partial pressures. 38 P,V,T behavior of gas mixtures. 39 Tutorial I Gas mixtures. 40 Tutorial II Property calculations. PROPERTIES OF STEAM 41 Pure substances, various phases of a substance. 42 Steam formation Concept 43 Graphical representation T S diagram and h s diagram of steam. 44 Specific properties of steam and its importance. 45 Use of mollier diagram and steam tables.
5 46 Wetness, Dryness and Superheating of steam. 47 Constant pressure heating and constant volume expansion process. 48 Isothermal expansion, Hyperbolic expansion. 49 Isentropic expansion and polytrophic expansion. 50 Throttling process and calorimeters used to measure dryness fraction. 51 Tutorial I Using steam tables for various processes 52 Tutorial II Using mollier chart for various processes Text Books: 1. Nag, P.K, Engineering thermodynamics, 6th Edition, Tata Mc Graw Hill, New Delhi Yunus N.J, Cengel A and Michael Boles A, Thermodynamics An Engineering approach 2 nd Edition Mc Graw Hill India. Reference Books: 1.Kothandaraman C. P and Domkundwar S. A Course in Thermal Engineering 5th Edition, Dhanpat Rai & Sons, New Delhi Name & Signature Faculty: Section Name Signature AUTO A D.BOOPATHI AUTO B S.SUNIL AUTO C S.DEVANAND HOD/AUTO
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