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ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes Regulation 2013 Anna University

ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes 

ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes Regulation 2013 Anna University free download. ME6703 Notes COMPUTER INTEGRATED MANUFACTURING SYSTEMS free pdf download.

OUTCOMES ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes:

Upon completion of this course, the student can able to understand the use of computers in process planning and use of FMS and Robotics in CIM

TEXT BOOK ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes:

1. Mikell.P.Groover “Automation, Production Systems and Computer Integrated
Manufacturing”, Prentice Hall of India, 2008.

2. Radhakrishnan P, Subramanyan S.and Raju V., “CAD/CAM/CIM”, 2nd Edition, New Age International (P) Ltd, New Delhi, 2000.

REFERENCES ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Notes:

1. Kant Vajpayee S, “Principles of Computer Integrated Manufacturing”, Prentice Hall India, 2003.

2. Gideon Halevi and Roland Weill, “Principles of Process Planning – A Logical Approach” Chapman & Hall, London, 1995.

3. Rao. P, N Tewari &T.K. Kundra, “Computer Aided Manufacturing”, Tata McGraw Hill Publishing Company, 2000.

Computer integrated manufacturing(CIM) is a broad term covering all
technologies and soft automation used to manage the resources for cost effective
production of tangible goods.

Integration – capital, human, technology and equipment

CIM – which orchestrates the factors of production and its management.

CIM is being projected as a panacea for Discrete manufacturing type of
industry, which produces 40% of all goods.
CIM is not applying computers to the design of the products of the company. That is computer aided design (CAD)! It is not using them as tools for part and assembly analysis.

That is computer aided engineering (CAE)! It is not using computers to aid the development of part programs to drive machine tools. That is computer aided manufacturing (CAM)! It is not materials requirement planning (MRP) or just in time (JIT) or any other method of developing the production schedule.

Subject Name COMPUTER INTEGRATED MANUFACTURING SYSTEMS
Subject Code ME6703
Regulation 2013
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UG syllabus R 2013

ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus Regulation 2013 Anna University

ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus

ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus Regulation 2013 Anna University free download. ME6703 Syllabus COMPUTER INTEGRATED MANUFACTURING SYSTEMS free pdf download.

OBJECTIVES ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus:

To understand the application of computers in various aspects of Manufacturing viz., Design, Proper planning, Manufacturing cost, Layout & Material Handling system.

UNIT I INTRODUCTION ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus:

Brief introduction to CAD and CAM – Manufacturing Planning, Manufacturing control- Introduction to CAD/CAM – Concurrent Engineering-CIM concepts – Computerised elements of CIM system –Types of production – Manufacturing models and Metrics – Mathematical models of Production Performance – Simple problems – Manufacturing Control – Simple Problems – Basic Elements of an Automated system – Levels of Automation – Lean Production and Just-In-Time Production.

UNIT II PRODUCTION PLANNING AND CONTROL AND COMPUTERISED PROCESS PLANNING ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus

Process planning – Computer Aided Process Planning (CAPP) – Logical steps in Computer Aided Process Planning – Aggregate Production Planning and the Master Production Schedule – Material Requirement planning – Capacity Planning- Control Systems-Shop Floor Control-Inventory Control – Brief on Manufacturing Resource Planning-II (MRP-II) & Enterprise Resource Planning (ERP) – Simple Problems.

UNIT III CELLULAR MANUFACTURING ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus

Group Technology(GT), Part Families – Parts Classification and coding – Simple Problems in Opitz Part Coding system – Production flow Analysis – Cellular Manufacturing – Composite part concept – Machine cell design and layout – Quantitative analysis in Cellular Manufacturing – Rank Order Clustering Method – Arranging Machines in a GT cell – Hollier Method – Simple Problems.

UNIT IV FLEXIBLE MANUFACTURING SYSTEM (FMS) AND AUTOMATED GUIDED VEHICLE SYSTEM (AGVS) ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus

Types of Flexibility – FMS – FMS Components – FMS Application & Benefits – FMS Planning and Control– Quantitative analysis in FMS – Simple Problems. Automated Guided Vehicle System (AGVS) – AGVS Application – Vehicle Guidance technology – Vehicle Management & Safety.

UNIT V INDUSTRIAL ROBOTICS ME6703 COMPUTER INTEGRATED MANUFACTURING SYSTEMS Syllabus

Robot Anatomy and Related Attributes – Classification of Robots- Robot Control systems – End Effectors – Sensors in Robotics – Robot Accuracy and Repeatability – Industrial Robot Applications – Robot Part Programming – Robot Accuracy and Repeatability – Simple Problems.

Subject Name COMPUTER INTEGRATED MANUFACTURING SYSTEMS
Subject Code ME6703
Regulation 2013
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question bank

ME6702 Mechatronics Question Bank Regulation 2013 Anna University

ME6702 Mechatronics Question Bank

ME6702 Mechatronics Question Bank Regulation 2013 Anna University free download. ME6702 Question Bank Mechatronics free pdf download.

Sample ME6702 Mechatronics Question Bank:

PART A:

1. List out the types of systems.

2. Describe the function of intelligent mechatronics systems.

3. What is meant by settling time?

4. Describe the applications of eddy current.

5. Explain the principle of RTD. (ME6702 Mechatronics Question Bank)

6. Name the few emerging areas of mechatronics.

7. What is meant by closed loop system?

8. Define threshold.

9. Classify photo sensors.

10. Generalized block diagram of measurement system.

11. Explain the use of display system. (ME6702 Mechatronics Question Bank)

12. Write any two applications of hall effect sensor.

13. Explain the principle of photo conductivity.

14. Describe the function of comparison element.

15. Classify the types of potentiometer.

16. Describe the principle used to measure temperature.

17. Define impedance of an element.

18. Classify the types of sensors. (ME6702 Mechatronics Question Bank)

19. Explain the principle of piezoelectric pressure sensor.

20. List out the functions of signal conditioner

PART B:

1. (i) Discuss the concept of shaft speed control in mechatronics approach with
neat block diagram. (8)

(ii) Explain about measurement system. (8) BT-4

2. Briefly explain about static characteristics of sensors. (16)

3. (i) Discuss about dynamic characteristics of sensors. (8)
(ii) Discuss any two types of light sensor. (8) (ME6702 Mechatronics Question Bank)

4. Explain with a neat sketch about strain gauge. (16)

5. Illustrate about eddy current sensor with neat diagram. (16)

6. Explain about potentiometer. (16) (ME6702 Mechatronics Question Bank)

7. Describe the concept of LVDT and capacitance sensor. (16)

8. How will you classify the mechatronics system? (16)

9. Explain the following (i) Temperature sensor (ii) Hall effect sensor (8+8)

10. (i) Illustrate the difference between open loop and closed loop control system.
(8)
(ii) Describe the concept of control system. (8) (ME6702 Mechatronics Question Bank)

11. Prepare the concept of strain gauge. (16)

12. Describe the following
(i) Automatic Control of water level. (8)
(ii) Strain gauge elements. (4)
(iii) Bimetallic strips. (4)

13. Illustrate with neat sketch about the basic elements of closed loop system. (16)

14. Formulate the factors to be considered for the selection of sensor? Explain in
detail with any two examples. (16) (ME6702 Mechatronics Question Bank)

Subject Name Mechatronics
Subject Code ME6702
Regulation 2013
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Important question

ME6702 Mechatronics Important questions Regulation 2013 Anna University

ME6702 Mechatronics Important questions

ME6702 Mechatronics Important questions Regulation 2013 Anna University free download. ME6702 Important questions Mechatronics free pdf download.

Sample ME6702 Mechatronics Important questions:

PART-A
1. Define mechatronics. (NOV/DEC 2005)

2. Mention the function of a mechatronic system. (APR/MAY 2013)

3. What are the elements of a mechatronic system? (APR/MAY 2010)

4. What are the basic elements of the measurement system? (APR/MAY 2005)

5. Distinguish between measurement system and control system. (NOV/DEC 2010) (ME6702 Mechatronics Important questions)

6. Draw the basic feedback system. (APR/MAY 2006)

7. Distinguish between open loop and closed loop control system. (NOV/DEC 2007)

8. How do you classify the sensors? (APR/MAY 2005), (APR/MAY 2013)

9. State the difference between primary and secondary transducers. (NOV/DEC 2003)

10. Define Hysteresis. (NOV/DEC 2009) (ME6702 Mechatronics Important questions)

11. State the dynamic characteristics. (APR/MAY 2004)

12. What is the working principle of an eddy current proximity sensor? (NOV/DEC 2008)

13. List any four applications of proximity sensors. (NOV/DEC 2011)

14. What is the working principle of temperature sensor? (NOV/DEC 2004)

15. What is RTD? State its applications. (NOV/DEC 2015) (ME6702 Mechatronics Important questions)

16. What is the basic principle of thermocouples? (APR/MAY 2016)

17. List out the key elements of Mechatronics. (NOV/DEC 2015)

18. Name few types of Proximity Sensors. (NOV/DEC 2015)

19. Brief on the working principle of Hall Effect Sensor. (MAY/ JUNE 2016)

20. Differentiate between position and proximity sensor. (MAY/ JUNE 2016)

PART – B (ME6702 Mechatronics Important questions)

1. With an example explain the various functional units of a measurement system. (NOV/DEC2012)

2. Explain open loop and closed loop control system with neat sketches. (APR/MAY 2005)

3. Explain the basic elements of a closed loop system. (NOV/DEC 2007)

4. Explain the functioning of a closed loop system with a neat sketch for controlling the speed of a shaft. (NOV/DEC 2010), (APR/MAY 2006)

5. Explain the functioning of a closed loop system with a neat sketch for temperature control system. (NOV/DEC 2011) (ME6702 Mechatronics Important questions)

6. Explain the functioning of a closed loop system with a neat sketch for automatic water level controller. (NOV/DEC 2007), (NOV/DEC 2009)

7. Explain the static performance characteristics of a sensor. (NOV/DEC 2008), (APR/MAY 2006) (NOV/DEC 2010), (APR/MAY 2010)

8. Explain the dynamic characteristics of a sensor. (NOV/DEC 2010), (APR/MAY 2005), (NOV/DEC 2012), (APR/MAY 2008)

9. Describe neatly potentiometer sensor. (NOV/DEC 2013)

10. Explain the functions of a capacitive sensor with neat sketch. (APR/MAY 2008) (ME6702 Mechatronics Important questions)

Subject Name Mechatronics
Subject Code ME6702
Regulation 2013
File PDF

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ME6702 Mechatronics Syllabus


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r2013 notes

ME6702 Mechatronics Notes Regulation 2013 Anna University

ME6702 Mechatronics Notes

ME6702 Mechatronics Notes Regulation 2013 Anna University free download. ME6702 Notes Mechatronics free pdf download.

OUTCOMES ME6702 Mechatronics Notes:

• Upon completion of this course, the students can able to design mechatronics system with the help of Microprocessor, PLC and other electrical and Electronics Circuits.

TEXT BOOKS ME6702 Mechatronics Notes:

1. Bolton, “Mechatronics”, Printice Hall, 2008

2. Ramesh S Gaonkar, “Microprocessor Architecture, Programming, and Applications with the 8085”, 5th Edition, Prentice Hall, 2008.

REFERENCES ME6702 Mechatronics Notes:

1. Michael B.Histand and Davis G.Alciatore, “Introduction to Mechatronics and Measurement systems”, McGraw Hill International edition, 2007.

2. Bradley D.A, Dawson D, Buru N.C and Loader A.J, “Mechatronics”, Chapman and Hall, 1993.

3. Smaili.A and Mrad.F , “Mechatronics Integrated Technologies for Intelligent Machines”, Oxford University Press, 2007.

4. Devadas Shetty and Richard A. Kolk, “Mechatronics Systems Design”, PWS publishing company, 2007.

5. Krishna Kant, “Microprocessors & Microcontrollers”, Prentice Hall of India, 2007.

6. Clarence W, de Silva, “Mechatronics” CRC Press, First Indian Re-print, 2013.

It field of study that implies the synergistic integration of electronic engineering,
electrical engineering, control engineering and computer technology maintenance of a wide range of engineering products and Processes”.with mechanical engineering for the design, manufacture, analyses and processes.

MEASUREMENT SYSTEM ME6702 Mechatronics Notes:

A measurement system can be defined as a black box which is used for
making measurements. It has the input as the quantity being measured and
the output as a measured value of that quantity.

Sensor ME6702 Mechatronics Notes:

A sensor consists of transducer whose function is to convert the one form of energy into electrical form of energy. A sensor is a sensing element of measurement system that converts the input quantity being measured into an output signal which is related to the quantity.

Signal Conditioner:
A signal conditioner receives signal from the sensor and manipulates it into a suitable condition for display. The signal conditioner performs filtering, amplification or other signal conditioning on the sensor output.

Subject Name Mechatronics
Subject Code ME6702
Regulation 2013
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ME6702 Mechatronics Syllabus


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ME6702 Mechatronics Syllabus Regulation 2013 Anna University

ME6702 Mechatronics Syllabus

ME6702 Mechatronics Syllabus Regulation 2013 Anna University free download. ME6702 Syllabus Mechatronics free pdf download.

OBJECTIVES ME6702 Mechatronics Syllabus:

To impart knowledge about the elements and techniques involved in Mechatronics systems which are very much essential to understand the emerging field of automation.

UNIT I INTRODUCTION ME6702 Mechatronics Syllabus

Introduction to Mechatronics – Systems – Concepts of Mechatronics approach – Need for Mechatronics – Emerging areas of Mechatronics – Classification of Mechatronics. Sensors and Transducers: Static and dynamic Characteristics of Sensor, Potentiometers – LVDT – Capacitance sensors – Strain gauges – Eddy current sensor – Hall effect sensor – Temperature sensors – Light sensors

UNIT II 8085 MICROPROCESSOR AND 8051 MICROCONTROLLER ME6702 Syllabus Mechatronics

Introduction – Architecture of 8085 – Pin Configuration – Addressing Modes –Instruction set, Timing diagram of 8085 – Concepts of 8051 microcontroller – Block diagram,.

UNIT III PROGRAMMABLE PERIPHERAL INTERFACE ME6702 Mechatronics Syllabus

Introduction – Architecture of 8255, Keyboard interfacing, LED display –interfacing, ADC and DAC interface, Temperature Control – Stepper Motor Control – Traffic Control interface.

UNIT IV PROGRAMMABLE LOGIC CONTROLLER ME6702 Syllabus Mechatronics

Introduction – Basic structure – Input and output processing – Programming – Mnemonics – Timers, counters and internal relays – Data handling – Selection of PLC.

UNIT V ACTUATORS AND MECHATRONIC SYSTEM DESIGN ME6702 Mechatronics Syllabus

Types of Stepper and Servo motors – Construction – Working Principle – Advantages and Disadvantages. Design process-stages of design process – Traditional and Mechatronics design concepts – Case studies of Mechatronics systems – Pick and place Robot – Engine Management system – Automatic car park barrier.

Subject Name Mechatronics
Subject Code ME6702
Regulation 2013
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Important question

ME6701 POWER PLANT ENGINEERING Question Bank Regulation 2013 Anna University

ME6701 POWER PLANT ENGINEERING Question Bank

ME6701 POWER PLANT ENGINEERING Question Bank Regulation 2013 Anna University free download. ME6701 Question Bank POWER PLANT ENGINEERING free pdf download.

Sample ME6701 POWER PLANT ENGINEERING Question Bank:

UNIT-I COAL BASED THERMAL POWER PLANTS 1

What do you understand by the term boiler draught?

Define steam rate and heat rate.

List the factors to be considered while choosing a site for steam power station.

What is meant by cooling Towers?

What is crusher and its crushing method?

List out the advantages of high pressure boilers in modern thermal power plant.

List out the different circuits of thermal power plant.

What are the requirements of a modern surface condenser?

Difference between impulse and reaction turbine.

What is the purpose of condenser?

What is ESP? State its use. (me6701 power plant engineering question bank)

Distinguish between Forced draught and induced draught.

Define Fluidization?

What are the modern trends in generating steam of high pressure boiler?

List down the important parameter of turbine.

What is a stoker? Classify it.

What is mean by cogeneration system?

How diesel power plants are classified?

Name the components of diesel power plant.

How diesel engines are classified?

(me6701 power plant engineering question bank)

How gas turbines are classified?

What are the different types of fuel used in gas turbine?

Name the material used in rotor of the gas turbine.

Define IGCC?

What is the purpose of regenerator?

Classify the types of combined cycle plants.

What the effects are of inter cooling in gas turbine power plant.

What is the difference between open cycle and closed cycle gas turbine power plant?

Name the fuel used in gas turbine.

What is the environmental impact of a combined cycle plant?

(me6701 power plant engineering question bank)

Subject Name POWER PLANT ENGINEERING
Subject Code ME6701
Regulation 2013
File PDF

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ME6701 POWER PLANT ENGINEERING Syllabus


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Categories
Important question

ME6701 POWER PLANT ENGINEERING Important questions Regulation 2013 Anna University

ME6701 POWER PLANT ENGINEERING Important questions

ME6701 POWER PLANT ENGINEERING Important questions Regulation 2013 Anna University free download. ME6701 Important questions POWER PLANT ENGINEERING free pdf download.

Sample ME6701 POWER PLANT ENGINEERING Important questions:

1. What are the types of power plants?
1. Thermal Power Plant
2. Diesel Power Plant
3. Nuclear Power Plant
4. Hydel Power Plant
5. Steam Power Plant
6. Gas Power Plant
7. Wind Power Plant
8. Geo Thermal
9. Bio – Gas
10. M.H.D. Power Plant

(ME6701 Power Plant Engineering Important questions)

2. What are the flow circuits of a thermal Power Plant?
1. Coal and ash circuits.
2. Air and Gas
3. Feed water and steam
4. Cooling and water circuits

3. List the different types of components (or) systems used in steam (or) thermal power plant?
1. Coal handling system.
2. Ash handling system.
3. Boiler
4. Prime mover
5. Draught system.
a. Induced Draught
b. Forced Draught (ME6701 Power Plant Engineering Important questions)

4. What are the merits of thermal power plants?
Merits (Advantages) of Thermal Power Plant:
1. The unit capacity of thermal power plant is more. The cost of unit decreases with the increase in
unit capacity
2. Life of the plant is more (25-30 years) as compared to diesel plant (2-5 years)

5. What are the Demerits of thermal power plants?
Demerits of thermal Power Plants:
1. Thermal plant are less efficient than diesel plants
2. Starting up the plant and brining into service takes more time
3. Cooling water required is more
4. Space required is more. (ME6701 Power Plant Engineering Important questions)

6. What are the various steps involved in coal handling system?
1. coal delivery
2. Unloading,
3. Preparation
4. Transfer
5. Outdoor storage
6. Covered storage
7. In-Plant handling
8. Weighing and measuring
9. Feeding the coal into furnace

(ME6701 Power Plant Engineering Important questions)

Subject Name POWER PLANT ENGINEERING
Subject Code ME6701
Regulation 2013
File PDF

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ME6701 POWER PLANT ENGINEERING Syllabus


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Categories
r2013 notes

ME6701 POWER PLANT ENGINEERING Notes Regulation 2013 Anna University

ME6701 POWER PLANT ENGINEERING Notes

ME6701 POWER PLANT ENGINEERING Notes Regulation 2013 Anna University free download. ME6701 Notes POWER PLANT ENGINEERING free pdf download.

OUTCOMES ME6701 POWER PLANT ENGINEERING Notes:

Upon completion of this course, the students can able to understand different types of power plant, and its functions and their flow lines and issues related to them.

Analyse and solve energy and economic related issues in power sectors.

TEXT BOOK ME6701 POWER PLANT ENGINEERING Notes:

1. Nag. P.K., “Power Plant Engineering”, Third Edition, Tata McGraw – Hill Publishing Company Ltd., 2008.

REFERENCES ME6701 POWER PLANT ENGINEERING Notes:

1. El-Wakil. M.M., “Power Plant Technology”, Tata McGraw – Hill Publishing Company Ltd., 2010.
2. Black & Veatch, Springer, “Power Plant Engineering”, 1996.
3. Thomas C. Elliott, Kao Chen and Robert C. Swanekamp, “Power Plant Engineering”, Second Edition, Standard Handbook of McGraw – Hill, 1998.
4. Godfrey Boyle, “Renewable energy”, Open University, Oxford University Press in association with the Open University, 2004.

ME6701 POWER PLANT ENGINEERING Notes

The development of power in any country depends upon the available resources in that country. The hydel power totally depends upon the natural sites available and hydrological cycle in that country. New sites cannot be humanly created for hydel power plants.

The development of nuclear power in a country requires advanced technological
developments and fuel resources. This source of power generation is not much desirable for the developing countries as it is dependent on high technology and they are highly capital based systems.

Many times, hydel power suffers if draught comes even once during a decade and the complete progress of the nation stops. The calamity of rain draught on power industry has been experienced by many states of this country.

ME6701 POWER PLANT ENGINEERING Notes
Subject Name POWER PLANT ENGINEERING
Subject Code ME6701
Regulation 2013
File PDF

ME6701 POWER PLANT ENGINEERING Notes click here to download

ME6701 POWER PLANT ENGINEERING Syllabus


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Categories
UG syllabus R 2013

ME6701 POWER PLANT ENGINEERING Syllabus Regulation 2013 Anna University

ME6701 POWER PLANT ENGINEERING Syllabus

ME6701 POWER PLANT ENGINEERING Syllabus Regulation 2013 Anna University free download. ME6701 Syllabus POWER PLANT ENGINEERING free pdf download.

OBJECTIVES ME6701 POWER PLANT ENGINEERING Syllabus:

Providing an overview of Power Plants and detailing the role of Mechanical Engineers in their operation and maintenance.

UNIT I COAL BASED THERMAL POWER PLANTS ME6701 POWER PLANT ENGINEERING Syllabus

Rankine cycle – improvisations, Layout of modern coal power plant, Super Critical Boilers, FBC Boilers, Turbines, Condensers, Steam & Heat rate, Subsystems of thermal power plants – Fuel and ash handling, Draught system, Feed water treatment. Binary Cycles and Cogeneration systems.

UNIT II DIESEL, GAS TURBINE AND COMBINED CYCLE POWER PLANTS ME6701 POWER PLANT ENGINEERING Syllabus

Otto, Diesel, Dual & Brayton Cycle – Analysis & Optimisation. Components of Diesel and Gas Turbine power plants. Combined Cycle Power Plants. Integrated Gasifier based Combined Cycle systems.

UNIT III NUCLEAR POWER PLANTS ME6701 Syllabus POWER PLANT ENGINEERING

Basics of Nuclear Engineering, Layout and subsystems of Nuclear Power Plants, Working of Nuclear Reactors : Boiling Water Reactor (BWR), Pressurized Water Reactor (PWR), CANada Deuterium- Uranium reactor (CANDU), Breeder, Gas Cooled and Liquid Metal Cooled Reactors. Safety measures for Nuclear Power plants.

UNIT IV POWER FROM RENEWABLE ENERGY ME6701 POWER PLANT ENGINEERING Syllabus

Hydro Electric Power Plants – Classification, Typical Layout and associated components including Turbines. Principle, Construction and working of Wind, Tidal, Solar Photo Voltaic (SPV), Solar Thermal, Geo Thermal, Biogas and Fuel Cell power systems.

UNIT V ENERGY, ECONOMIC AND ENVIRONMENTAL ISSUES OF POWER PLANTS ME6701 Syllabus POWER PLANT ENGINEERING

Power tariff types, Load distribution parameters, load curve, Comparison of site selection criteria, relative merits & demerits, Capital & Operating Cost of different power plants. Pollution control technologies including Waste Disposal Options for Coal and Nuclear Power Plants.

Subject Name POWER PLANT ENGINEERING
Subject Code ME6701
Regulation 2013
File PDF

ME6701 POWER PLANT ENGINEERING Syllabus click here to download

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