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UG syllabus R-2017

EE8301 Syllabus Electrical Machines 1 Regulation 2017 Anna University

EE8301 Syllabus Electrical Machines 1

EE8301 Syllabus Electrical Machines 1 Regulation 2017 Anna University free download. Electrical Machines 1 Syllabus EE8301 pdf free download.

UNIT I MAGNETIC CIRCUITS AND MAGNETIC MATERIALS EE8301 Syllabus Electrical Machines 1

Magnetic circuits –Laws governing magnetic circuits – Flux linkage, Inductance and energy – Statically and Dynamically induced EMF – Torque – Properties of magnetic materials, Hysteresis and Eddy Current losses – AC excitation, introduction to permanent magnets- Transformer as a magnetically coupled circuit.

UNIT II TRANSFORMERS EE8301 Syllabus Electrical Machines 1

Construction – principle of operation – equivalent circuit parameters – phasor diagrams, losses – testing – efficiency and voltage regulation-all day efficiency-Sumpner’s test, per unit representation – inrush current – three phase transformers-connections – Scott Connection – Phasing of transformer– parallel operation of three phase transformers-auto transformer – tap changing transformers- tertiary winding.

UNIT III ELECTROMECHANICAL ENERGY CONVERSION AND CONCEPTS IN ROTATING MACHINES EE8301 Syllabus Electrical Machines 1

Energy in magnetic system – Field energy and co energy-force and torque equations – singly and multiply excited magnetic field systems-mmf of distributed windings – Winding Inductances-, magnetic fields in rotating machines – rotating mmf waves – magnetic saturation and leakage fluxes.

UNIT IV DC GENERATORS EE8301 Syllabus Electrical Machines 1

Construction and components of DC Machine – Principle of operation – Lap and wave windings-EMF equations– circuit model – armature reaction –methods of excitationcommutation – interpoles compensating winding –characteristics of DC generators.

UNIT V DC MOTORS EE8301 Electrical Machines 1

Principle and operations – types of DC Motors – Speed Torque Characteristics of DC Motorsstarting and speed control of DC motors –Plugging, dynamic and regenerative brakingtesting and efficiency – Retardation test- Swinburne’s test and Hopkinson’s test – Permanent Magnet DC (PMDC)motors-applications of DC
Motor

Subject name Electrical Machines 1
Semester 3
Subject Code EE8301
Regulation 2017 regulation

EE8301 Syllabus Electrical Machines 1 Click here to download

EE8301 Notes Electrical Machines 1


EE8301 Important Questions Electrical Machines 1


EE8301 Question Bank Electrical Machines 1

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UG syllabus R-2017

EE8391 Syllabus Electromagnetic Theory Regulation 2017 Anna University

EE8391 Syllabus Electromagnetic Theory

EE8391 Syllabus Electromagnetic Theory Regulation 2017 Anna University free download. Electromagnetic Theory Syllabus EE8391 pdf free download.

UNIT I ELECTROSTATICS – I EE8391 Syllabus Electromagnetic Theory

Sources and effects of electromagnetic fields – Coordinate Systems – Vector fields –Gradient, Divergence, Curl – theorems and applications – Coulomb’s Law – Electric field intensity – Field due to discrete and continuous charges – Gauss’s law and applications.

UNIT II ELECTROSTATICS – II EE8391 Syllabus Electromagnetic Theory

Electric potential – Electric field and equipotential plots, Uniform and Non-Uniform field, Utilization factor – Electric field in free space, conductors, dielectrics – Dielectric polarization – Dielectric strength – Electric field in multiple dielectrics – Boundary conditions, Poisson’s and Laplace’s equations, Capacitance, Energy density, Applications.

UNIT III MAGNETOSTATICS EE8391 Syllabus Electromagnetic Theory

Lorentz force, magnetic field intensity (H) – Biot–Savart’s Law – Ampere’s Circuit Law – H due to straight conductors, circular loop, infinite sheet of current, Magnetic flux density (B) – B in free space, conductor, magnetic materials – Magnetization, Magnetic field in multiple media – Boundary conditions, scalar and vector potential, Poisson’s Equation, Magnetic force, Torque,
Inductance, Energy density, Applications.

UNIT IV ELECTRODYNAMIC FIELDS EE8391 Electromagnetic Theory Syllabus

Magnetic Circuits – Faraday’s law – Transformer and motional EMF – Displacement current – Maxwell’s equations (differential and integral form) – Relation between field theory and circuit theory – Applications.

UNIT V ELECTROMAGNETIC WAVES EE8391 Electromagnetic Theory Syllabus

Electromagnetic wave generation and equations – Wave parameters; velocity, intrinsic impedance, propagation constant – Waves in free space, lossy and lossless dielectrics, conductors- skin depth – Poynting vector – Plane wave reflection and refraction.

Subject name Electromagnetic Theory
Semester 3
Subject Code EE8391
Regulation 2017 regulation

EE8391 Syllabus Electromagnetic Theory Click here to download

EE8391 notes Electromagnetic Theory


EE8391 Important Questions Electromagnetic Theory


EE8391 Question Bank Electromagnetic Theory

Categories
UG syllabus R-2017

EE8351 Syllabus DIGITAL LOGIC CIRCUITS Regulation 2017 Anna University

EE8351 Syllabus DIGITAL LOGIC CIRCUITS

EE8351 Syllabus DIGITAL LOGIC CIRCUITS Regulation 2017 Anna University free download. DIGITAL LOGIC CIRCUITS Syllabus EE8351 pdf free download.

UNIT I NUMBER SYSTEMS AND DIGITAL LOGIC FAMILIES EE8351 Syllabus DIGITAL LOGIC CIRCUITS

Review of number systems, binary codes, error detection and correction codes (Parity and Hamming code) – Digital Logic Families -comparison of RTL, DTL, TTL, ECL and MOS families -operation, characteristics of digital logic family.

UNIT II COMBINATIONAL CIRCUITS EE8351 Syllabus DIGITAL LOGIC CIRCUITS

Combinational logic – representation of logic functions-SOP and POS forms, K-map representations – minimization using K maps – simplification and implementation of combinational logic – multiplexers and de multiplexers – code converters, adders, subtractors, Encoders and Decoders.

UNIT III SYNCHRONOUS SEQUENTIAL CIRCUITS EE8351 Syllabus DIGITAL LOGIC CIRCUITS

Sequential logic- SR, JK, D and T flip flops – level triggering and edge triggering – counters – asynchronous and synchronous type – Modulo counters – Shift registers – design of synchronous sequential circuits – Moore and Melay models- Counters, state diagram; state reduction; state assignment.

UNIT IV ASYNCHRONOUS SEQUENTIAL CIRCUITS AND PROGRAMMABILITY LOGIC DEVICES EE8351  DIGITAL LOGIC CIRCUITS Syllabus

Asynchronous sequential logic circuits-Transition tability, flow tability-race conditions, hazards &errors in digital circuits; analysis of asynchronous sequential logic circuitsintroduction to Programmability Logic Devices: PROM – PLA –PAL, CPLD-FPGA.

UNIT V VHDL EE8351 DIGITAL LOGIC CIRCUITS Syllabus

RTL Design – combinational logic – Sequential circuit – Operators – Introduction to Packages – Subprograms – Test bench. (Simulation /Tutorial Examples: adders, counters, flip flops, Multiplexers & De multiplexers).

Subject name DIGITAL LOGIC CIRCUITS
Semester 3
Subject Code EE8351
Regulation 2017 regulation

EE8351 Syllabus DIGITAL LOGIC CIRCUITS Click here to download

EE8351 Notes DIGITAL LOGIC CIRCUITS


EE8351 Important Questions DIGITAL LOGIC CIRCUITS


EE8351 Question Bank DIGITAL LOGIC CIRCUITS

Categories
UG syllabus R-2017

EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY Regulation 2017 Anna University

EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY

EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY Regulation 2017 Anna University free download. Computer Aided Machine Drawing Syllabus ME8381 pdf free download.

OBJECTIVE: EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY

• To validate the principles studied in theory by performing experiments in the laboratory

LIST OF EXPERIMENTS EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY

1. Load test on DC Shunt & DC Series motor

2. O.C.C & Load characteristics of DC Shunt and DC Series generator

3. Speed control of DC shunt motor (Armature, Field control)

4. Load test on single phase transformer

5. O.C & S.C Test on a single phase transformer

6. Regulation of an alternator by EMF & MMF methods.

7. V curves and inverted V curves of synchronous Motor

8. Load test on three phase squirrel cage Induction motor

9. Speed control of three phase slip ring Induction Motor

10. Load test on single phase Induction Motor.

11. Study of DC & AC Starters

TOTAL: 60 PERIODS

OUTCOME: EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY

 Ability to perform speed characteristic of different electrical machine

LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS

S.No. NAME OF THE EQUIPMENT Qty.
1 DC Shunt motor 2
2 DC Series motor 1
3 DC shunt motor-DC Shunt Generator set 1
4 DC Shunt motor-DC Series Generator set 1
5 Single phase transformer 2
6 Three phase alternator 2
7 Three phase synchronous motor 1
8 Three phase Squirrel cage Induction motor 1
9 Three phase Slip ring Induction motor 1
10 Single phase Induction motor 1

 

Subject name ELECTRICAL ENGINEERING LABORATORY
Semester 3
Subject Code EE8361
Regulation 2017 regulation

EE8361 Syllabus ELECTRICAL ENGINEERING LABORATORY Click here to download

ME8361 Syllabus Manufacturing Technology Laboratory – I


ME8381 Syllabus Computer Aided Machine Drawing


HS8381 Syllabus Interpersonal Skills / Listening & Speaking

Categories
UG syllabus R-2017

ME8381 Syllabus Computer Aided Machine Drawing Regulation 2017 Anna University

ME8381 Syllabus Computer Aided Machine Drawing

ME8381 Syllabus Computer Aided Machine Drawing Regulation 2017 Anna University free download. Computer Aided Machine Drawing Syllabus ME8381 pdf free download.

OBJECTIVES: ME8381 Syllabus Computer Aided Machine Drawing

 To make the students understand and interpret drawings of machine components

 To prepare assembly drawings both manually and using standard CAD packages

 To familiarize the students with Indian Standards on drawing practices and standard components

 To gain practical experience in handling 2D drafting and 3D modeling software systems.

UNIT I DRAWING STANDARDS & FITS AND TOLERANCES 12 ME8381 Syllabus Computer Aided Machine Drawing

Code of practice for Engineering Drawing, BIS specifications – Welding symbols, riveted joints, keys, fasteners – Reference to hand book for the selection of standard components like bolts, nuts, screws, keys etc. – Limits, Fits – Tolerancing of individual dimensions – Specification of Fits – Preparation of production drawings and reading of part and assembly drawings, basic principles of geometric dimensioning & tolerancing.

UNIT II INTRODUCTION TO 2D DRAFTING 16 ME8381 Syllabus Computer Aided Machine Drawing

 Drawing, Editing, Dimensioning, Layering, Hatching, Block, Array, Detailing, Detailed drawing.
 Bearings – Bush bearing, Plummer block
 Valves – Safety and non-return valves.

UNIT III 3D GEOMETRIC MODELING AND ASSEMBLY 32 ME8381 Syllabus Computer Aided Machine Drawing

Sketcher – Datum planes – Protrusion – Holes – Part modeling – Extrusion – Revolve – Sweep –
Loft – Blend – Fillet – Pattern – Chamfer – Round – Mirror – Section – Assembly
 Couplings – Flange, Universal, Oldham’s, Muff, Gear couplings
 Joints – Knuckle, Gib & cotter, strap, sleeve & cotter joints
 Engine parts – Piston, connecting rod, cross-head (vertical and horizontal), stuffing box, multi-plate clutch
 Miscellaneous machine components – Screw jack, machine vice, tail stock, chuck, vane and gear pump

TOTAL:60 PERIODS ME8381 Syllabus Computer Aided Machine Drawing

Note: 25% of assembly drawings must be done manually and remaining 75% of assembly drawings must be done by using any CAD software. The above tasks can be performed manually and using standard commercial 2D / 3D CAD software

OUTCOMES: ME8381 Syllabus Computer Aided Machine Drawing

Upon the completion of this course the students will be able to
CO1
Follow the drawing standards, Fits and Tolerances
CO2
Re-create part drawings, sectional views and assembly drawings as per standards

TEXT BOOK: ME8381 Syllabus Computer Aided Machine Drawing

1. Gopalakrishna K.R., “Machine Drawing”, 22nd Edition, Subhas Stores Books Corner, Bangalore, 2013

REFERENCES: ME8381 Syllabus Computer Aided Machine Drawing

1. N. D. Bhatt and V.M. Panchal, “Machine Drawing”, 48th Edition, Charotar Publishers,2013

2. Junnarkar, N.D., “Machine Drawing”, 1st Edition, Pearson Education, 2004

3. N. Siddeshwar, P. Kanniah, V.V.S. Sastri, ”Machine Drawing” , published by Tata Mc GrawHill,2006

4. S. Trymbaka Murthy, “A Text Book of Computer Aided Machine Drawing”, CBS Publishers, New Delhi, 2007

Subject name Computer Aided Machine Drawing
Semester 3
Subject Code ME8381
Regulation 2017 regulation

ME8381 Syllabus Computer Aided Machine Drawing Click here to download

ME8361 Syllabus Manufacturing Technology Laboratory – I


EE8361 Syllabus Electrical Engineering Laboratory


HS8381 Syllabus Interpersonal Skills / Listening & Speaking

Categories
UG syllabus R-2017

ME8361 Syllabus Manufacturing Technology Laboratory 1 Regulation 2017 Anna University

ME8361 Syllabus Manufacturing Technology Laboratory 1

ME8361 Syllabus Manufacturing Technology Laboratory 1 Regulation 2017 Anna University free download. Manufacturing Technology Laboratory 1 Syllabus ME8361 pdf free download.

OBJECTIVE: ME8361 Syllabus Manufacturing Technology Laboratory 1

 To Study and practice the various operations that can be performed in lathe, shaper, drilling, milling machines etc. and to equip with the practical knowledge required in the core industries.

LIST OF EXPERIMENTS ME8361 Syllabus Manufacturing Technology Laboratory 1

Machining and Machining time estimations for:

1. Taper Turning

2. External Thread cutting

3. Internal Thread Cutting

4. Eccentric Turning

5. Knurling

6. Square Head Shaping

7. Hexagonal Head Shaping

8. Fabrication of simple structural shapes using Gas Metal Arc Welding

9. Joining of plates and pipes using Gas Metal Arc Welding/ Arc Welding /Submerged arc welding

10. Preparation of green sand moulds

11 Manufacturing of simple sheet metal components using shearing and bending operations.

12. Manufacturing of sheet metal components using metal spinning on a lathe

TOTAL: 60 PERIODS

OUTCOMES: ME8361 Syllabus Manufacturing Technology Laboratory 1

Upon the completion of this course the students will be able to
CO1
Demonstrate the safety precautions exercised in the mechanical workshop.
CO2
Make the workpiece as per given shape and size using Lathe.
CO3
Join two metals using arc welding.
CO4
Use sheet metal fabrication tools and make simple tray and funnel.
CO5
Use different moulding tools, patterns and prepare sand moulds.

LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS ME8361 Syllabus Manufacturing Technology Laboratory 1
S. NO. NAME OF THE EQUIPMENT Qty.
1 Centre Lathes 7 Nos
2 Horizontal Milling Machine 1 No
3 Vertical Milling Machine 1 No
4 Shaper 1 No.
5 Arc welding transformer with cables and holders 2 Nos
6 Oxygen and acetylene gas cylinders, blow pipe and other welding outfit 1 No
7 Moulding table, Moulding equipments 2 Nos
8 Sheet metal forming tools and equipments 2 Nos.

 

Subject name Manufacturing Technology Laboratory 1
Semester 3
Subject Code ME8361
Regulation 2017 regulation

ME8361 Syllabus Manufacturing Technology Laboratory 1 Click here to download

ME8381 Syllabus Computer Aided Machine Drawing


EE8361 Syllabus Electrical Engineering Laboratory


HS8381 Syllabus Interpersonal Skills / Listening & Speaking

Categories
UG syllabus R-2017

EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS Regulation 2017 Anna University

EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS

EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS Regulation 2017 Anna University free download. ELECTRICAL DRIVES AND CONTROLS Syllabus EE8353 pdf free download.

UNIT I INTRODUCTION 8 EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS

Basic Elements – Types of Electric Drives – factors influencing the choice of electrical drives – heating and cooling curves – Loading conditions and classes of duty – Selection of power rating for drive motors with regard to thermal overloading and Load variation factors

UNIT II DRIVE MOTOR CHARACTERISTICS 9 EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS

Mechanical characteristics – Speed-Torque characteristics of various types of load and drive motors – Braking of Electrical motors – DC motors: Shunt, series and compound – single phase and three phase induction motors.

UNIT III STARTING METHODS 8 EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS

Types of D.C Motor starters – Typical control circuits for shunt and series motors – Three phase squirrel cage and slip ring induction motors.

UNIT IV CONVENTIONAL AND SOLID STATE SPEED CONTROL OF D.C. DRIVES 10 EE8353 ELECTRICAL DRIVES AND CONTROLS Syllabus

Speed control of DC series and shunt motors – Armature and field control, Ward-Leonard control system – Using controlled rectifiers and DC choppers –applications.

UNIT V CONVENTIONAL AND SOLID STATE SPEED CONTROL OF A.C. DRIVES 10 EE8353 ELECTRICAL DRIVES AND CONTROLS Syllabus

Speed control of three phase induction motor – Voltage control, voltage / frequency control, slip power recovery scheme – Using inverters and AC voltage regulators – applications.

Subject name ELECTRICAL DRIVES AND CONTROLS
Semester 3
Subject Code EE8353
Regulation 2017 regulation

EE8353 Syllabus ELECTRICAL DRIVES AND CONTROLS Click here to download

EE8353 Notes ELECTRICAL DRIVES AND CONTROLS


EE8353 Important Questions ELECTRICAL DRIVES AND CONTROLS


EE8353 Question Bank ELECTRICAL DRIVES AND CONTROLS

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UG syllabus R-2017

ME8351 Syllabus MANUFACTURING TECHNOLOGY 1 Regulation 2017 Anna University

ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

ME8351 Syllabus MANUFACTURING TECHNOLOGY 1 Regulation 2017 Anna University free download. MANUFACTURING TECHNOLOGY 1 Syllabus ME8351 pdf free download.

UNIT I METAL CASTING PROCESSES 9 ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

Sand Casting : Sand Mould – Type of patterns – Pattern Materials – Pattern allowances –Moulding sand Properties and testing – Cores –Types and applications – Moulding machines– Types and applications; Melting furnaces : Blast and Cupola Furnaces; Principle of special casting processes : Shell – investment – Ceramic mould – Pressure die casting – Centrifugal Casting – CO2 process – Stir casting; Defects in Sand casting

UNIT II JOINING PROCESSES 9 ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

Operating principle, basic equipment, merits and applications of: Fusion welding processes: Gas welding – Types – Flame characteristics; Manual metal arc welding – Gas Tungsten arc welding
– Gas metal arc welding – Submerged arc welding – Electro slag welding; Operating principle and
applications of: Resistance welding – Plasma arc welding – Thermit welding – Electron beam welding – Friction welding and Friction Stir Welding; Brazing and soldering; Weld defects: types, causes and cure.

UNIT III METAL FORMING PROCESSES 9 ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

Hot working and cold working of metals – Forging processes – Open, impression and closed die forging – forging operations. Rolling of metals– Types of Rolling – Flat strip rolling – shape rolling operations – Defects in rolled parts. Principle of rod and wire drawing – Tube drawing – Principles of Extrusion – Types – Hot and Cold extrusion.

UNIT IV SHEET METAL PROCESSES 9 ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

Sheet metal characteristics – shearing, bending and drawing operations – Stretch forming operations – Formability of sheet metal – Test methods –special forming processes-Working principle and applications – Hydro forming – Rubber pad forming – Metal spinning– Introduction of Explosive forming, magnetic pulse forming, peen forming, Super plastic forming – Micro forming

UNIT V MANUFACTURE OF PLASTIC COMPONENTS 9 ME8351 Syllabus MANUFACTURING TECHNOLOGY 1

Types and characteristics of plastics – Moulding of thermoplastics – working principles and typical applications – injection moulding – Plunger and screw machines – Compression moulding, Transfer Moulding – Typical industrial applications – introduction to blow moulding –Rotational moulding – Film blowing – Extrusion – Thermoforming – Bonding of Thermoplastics.

Subject name MANUFACTURING TECHNOLOGY 1
Semester 3
Subject Code ME8351
Regulation 2017 regulation

ME8351 Syllabus MANUFACTURING TECHNOLOGY 1 Click here to download

ME8351 Notes MANUFACTURING TECHNOLOGY 1


ME8351 Important Questions MANUFACTURING TECHNOLOGY 1


ME8351 Question Bank MANUFACTURING TECHNOLOGY 1

Categories
UG syllabus R-2017

CE8394 Syllabus Fluid Mechanics and Machinery Regulation 2017 Anna University

CE8394 Syllabus Fluid Mechanics and Machinery

CE8394 Syllabus Fluid Mechanics and Machinery Regulation 2017 Anna University free download. Fluid Mechanics and Machinery Syllabus CE8394 pdf free download.

UNIT I FLUID PROPERTIES AND FLOW CHARACTERISTICS 12 CE8394 Syllabus Fluid Mechanics and Machinery

Units and dimensions- Properties of fluids- mass density, specific weight, specific volume, specific gravity, viscosity, compressibility, vapor pressure, surface tension and capillarity. Flow characteristics – concept of control volume – application of continuity equation, energy equation and momentum equation.

UNIT II FLOW THROUGH CIRCULAR CONDUITS 12 CE8394 Syllabus Fluid Mechanics and Machinery

Hydraulic and energy gradient – Laminar flow through circular conduits and circular annuli-Boundary layer concepts – types of boundary layer thickness – Darcy Weisbach equation –friction factor- Moody diagram- commercial pipes- minor losses – Flow through pipes in series and parallel.

UNIT III DIMENSIONAL ANALYSIS 12 CE8394 Syllabus Fluid Mechanics and Machinery

Need for dimensional analysis – methods of dimensional analysis – Similitude –types of similitude – Dimensionless parameters- application of dimensionless parameters – Model analysis.

UNIT IV PUMPS 12 CE8394 Syllabus Fluid Mechanics and Machinery

Impact of jets – Euler’s equation – Theory of roto-dynamic machines – various efficiencies– velocity components at entry and exit of the rotor- velocity triangles – Centrifugal pumps– working principle – work done by the impeller – performance curves – Reciprocating pump- working principle – Rotary pumps –classification.

UNIT V TURBINES 12 CE8394 Syllabus Fluid Mechanics and Machinery

Classification of turbines – heads and efficiencies – velocity triangles. Axial, radial and mixed flow turbines. Pelton wheel, Francis turbine and Kaplan turbines- working principles – work done by water on the runner – draft tube. Specific speed – unit quantities – performance curves for turbines – governing of turbines.

Subject name Fluid Mechanics and Machinery
Semester 3
Subject Code CE8394
Regulation 2017 regulation

CE8394 Syllabus Fluid Mechanics and Machinery Click here to download

CE8394 Notes Fluid Mechanics and Machinery


CE8394 Important questions Fluid Mechanics and Machinery


CE8394 Question Bank Fluid Mechanics and Machinery

Categories
UG syllabus R-2017

ME8391 Syllabus ENGINEERING THERMODYNAMICS Regulation 2017 Anna University

ME8391 Syllabus ENGINEERING THERMODYNAMICS

ME8391 Syllabus ENGINEERING THERMODYNAMICS Regulation 2017 Anna University free download. ENGINEERING THERMODYNAMICS Syllabus ME8391 pdf free download.

UNIT I BASIC CONCEPTS AND FIRST LAW ME8391 Syllabus ENGINEERING THERMODYNAMICS

Basic concepts – concept of continuum, comparison of microscopic and macroscopic approach. Path and point functions. Intensive and extensive, total and specific quantities. System and their types. Thermodynamic Equilibrium State, path and process. Quasi-static, reversible and irreversible processes. Heat and work transfer, definition and comparison, sign convention. Displacement work and other modes of work .P-V diagram. Zeroth law of thermodynamics – concept of temperature and thermal equilibrium– relationship between temperature scales –new temperature scales. First law of thermodynamics –application to closed and open systems – steady and unsteady flow processes.

UNIT II SECOND LAW AND AVAILABILITY ANALYSIS ME8391 Syllabus ENGINEERING THERMODYNAMICS

Heat Reservoir, source and sink. Heat Engine, Refrigerator, Heat pump. Statements of second law and its corollaries. Carnot cycle Reversed Carnot cycle, Performance. Clausius inequality. Concept of entropy, T-s diagram, Tds Equations, entropy change for – pure substance, ideal gases – different processes, principle of increase in entropy. Applications of II Law. High and low grade energy. Available and non-available energy of a source and finite body. Energy and irreversibility. Expressions for the energy of a closed system and open systems. Energy balance and entropy generation. Irreversibility. I and II law Efficiency.

UNIT III PROPERTIES OF PURE SUBSTANCE AND STEAM POWER CYCLE ME8391 Syllabus ENGINEERING THERMODYNAMICS

Formation of steam and its thermodynamic properties, p-v, p-T, T-v, T-s, h-s diagrams. p-v-T surface. Use of Steam Table and Mollier Chart. Determination of dryness fraction. Application of I and II law for pure substances. Ideal and actual Rankine cycles, Cycle Improvement Methods – Reheat and Regenerative cycles, Economiser, preheater, Binary and Combined cycles.

UNIT IV IDEAL AND REAL GASES, THERMODYNAMIC RELATIONS ME8391 Syllabus ENGINEERING THERMODYNAMICS

Properties of Ideal gas- Ideal and real gas comparison- Equations of state for ideal and real gases- Reduced properties. Compressibility factor-.Principle of Corresponding states. -Generalised
Compressibility Chart and its use-. Maxwell relations, Tds Equations, Difference and ratio of heat capacities, Energy equation, Joule-Thomson Coefficient, Clausius Clapeyron equation, Phase Change Processes. Simple Calculations.

UNIT V GAS MIXTURES AND PSYCHROMETRY ME8391 Syllabus ENGINEERING THERMODYNAMICS

Mole and Mass fraction, Dalton’s and Amagat’s Law. Properties of gas mixture – Molar mass, gas constant, density, change in internal energy, enthalpy, entropy and Gibbs function. Psychrometric properties, Psychrometric charts. Property calculations of air vapour mixtures by using chart and expressions. Psychrometric process – adiabatic saturation, sensible heating and cooling, humidification, dehumidification, evaporative cooling and adiabatic mixing. Simple Applications

Subject name ENGINEERING THERMODYNAMICS
Semester 3
Subject Code MA8391
Regulation 2017 regulation

ME8391 Syllabus ENGINEERING THERMODYNAMICS Click here to download

ME8391 Notes ENGINEERING THERMODYNAMICS


ME8391 Important Questions ENGINEERING THERMODYNAMICS


ME8391 Question Bank ENGINEERING THERMODYNAMICS