Instrumentation

ISDLO8044: Power Plant Instrumentation Syllabus for IS 8th Sem 2019 Pattern Mumbai University (Department Level Optional Course-4)

Power Plant Instrumentation detailed syllabus scheme for Instrumentation Engineering (IS), 2019 regulation has been taken from the MU official website and presented for the Bachelor of Engineering students. For Course Code, Course Title, Test 1, Test 2, Avg, End Sem Exam, Team Work, Practical, Oral, Total, and other information, do visit full semester subjects post given below.

For 8th Sem Scheme of Instrumentation Engineering (IS), 2019 Pattern, do visit IS 8th Sem Scheme, 2019 Pattern. For the Department Level Optional Course-4 scheme of 8th Sem 2019 regulation, refer to IS 8th Sem Department Level Optional Course-4 Scheme 2019 Pattern. The detail syllabus for power plant instrumentation is as follows.

Power Plant Instrumentation Syllabus for Instrumentation Engineering BE 8th Sem 2019 Pattern Mumbai University

Course Objectives:

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Course Outcomes:

The students will be able to:

  1. Identify the energy sources and explain power generation.
  2. Describe operation and control of various equipment in thermal power plant.
  3. Select the sites for hydroelectric power plants and explain its operation.
  4. Explain the power generation and control of Nuclear power plant.
  5. Describe the non-conventional energy resources.
  6. Compare different types of power plants.

Prerequisites:

Knowledge of energy resources, types of power plants and power generation.

Module 1

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Module 2

Thermal Power Plant- Method of power generation, layout and energy conversion process. Types of Turbines & their control. Types of Boilers and their control. Types of Generators and their control, Condensers. Types of Pumps and Fans, variable speed pumps and Fans, Material handling system, study of all loops-water, steam, fuel etc. Schematics of Gas turbine and Diesel power plant. Application of DCS in power plants. 14 CO2

Module 3

Hydroelectric Power Plant- Site selection, Hydrology, Estimation electric power to be developed, classification of Hydropower plants. Types of Turbines for hydroelectric power plant, pumped storage plants, storage reservoir plants. 06 CO3

Module 4

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
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Module 5

Non-conventional Energy Resources – Wind Energy: Power in wind, Conversion of wind power, Aerodynamics of wind turbine, types of wind turbine and their modes of operation, power control of wind turbines, Betz limit, Pitch & Yaw control, wind mill, wind pumps, wind farms, different generator protections, safety. Solar Energy: Solar resource, solar energy conversion systems. Solar PV technology: Block diagram of PV system, advantages and limitations. Solar thermal energy system: Principle, solar collector and its types, solar concentrator and its types, safety. Introduction to Modern Biomass, Bio-fuels, Geothermal energy, Tidal energy and Ocean thermal energy. 12 CO5

Module 6

Comparison of different types of power plant: thermal power plant, hydro electric power plant, wind, solar, nuclear power plant on the basis of: Performance, efficiency, site selection, Economics-capital and running, safety. Introduction to Hybrid Power Generation concept. 04 CO6

Internal Assessment:

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.
Get it on Google Play.

End Semester Theory Examination:

  1. Question paper will comprise of 6 questions, each carrying 20 Marks.
  2. Total 4 questions need to be solved.
  3. Question No. 1 will be compulsory and based on entire syllabus wherein sub questions of 4 to 5 marks will be asked.
  4. Remaining questions will be mixed in nature.
  5. In question paper weight age of each module will be proportional to number of respective Lecture hours as mentioned in the syllabus.

Text Books:

  1. P. K. Nag, Power plant engineering, 3 edition,
  2. McGraw Hill.
  3. K. Krishnaswamy, M. Ponni Bala, ,Power Plant Instrumentation, 2011, Prentice Hall India.
  4. R. K. Rajput, A Textbook of Power Plant Engineering, 2010, Laxmi Publications.

Reference Books:

  1. Domkundwar, Power Plant Engg.
  2. B. H. Khan, Non-conventional energy resources, McGraw Hill, New Delhi.
  3. Chetan Singh Solanki, Renewable energy Technology, Prentice Hall Publication.
  4. S. P. Sukhatme, Solar Energy, Tata McGraw Hill, New Delhi.
  5. G. D. Rai, Nonconventional energy sources, Khanna Publication.
  6. Dickinson & Cheremision off, Solar Energy Technology vol I & II.
  7. Tony Burton, David Sharpe, Nick Jenkins, Ervin Bossanyi ,Wind Energy Handbook (2001), John Wiley & Sons, ISBN: 0471489972.
  8. James Manwell, J. F. Manwell, J. G. McGowan, Wind Energy Explained: Theory, Design and Application (2002), John Wiley and Sons Ltd, ISBN: 0471499722
  9. Z. Lubosny, Wind Turbine Operation in Electric Power Systems (2003), Springer-Verlag New York, Inc ; ISBN: 354040340X.
  10. Z. Lubosny, Wind Turbine Operation in Electric Power Systems (2003), Springer-Verlag New York, Inc ; ISBN: 354040340X.
  11. G.F. Gilman, Boiler Control Systems Engineering, 2005, ISA Publication.

For detail Syllabus of all subjects of Instrumentation Engineering (IS) 8th Sem 2019 regulation, visit IS 8th Sem Subjects of 2019 Pattern.

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