Applied Thermodynamics detailed syllabus scheme for B.Tech Mechanical Engineering (ME), 2017-18 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.
For all other DBATU Syllabus for Mechanical Engineering 4th Sem 2017-18, do visit ME 4th Sem 2017-18 Onwards Scheme. The detailed syllabus scheme for applied thermodynamics is as follows.
Applied Thermodynamics Syllabus for Mechanical Engineering (ME) 2nd Year 4th Sem 2017-18 DBATU
Pre-requisite:
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Course Outcomes:
At the end of the course, students will be able to:
- Define the terms like calorific value of fuel, stoichiometric air-fuel ratio, excess air, equivalent evaporation, boiler efficiency, etc. Calculate minimum air required for combustion of fuel.
- Study and Analyze gas power cycles and vapour power cycles like Otto, Diesel, dual, Joule and Rankine cycles and derive expressions for the performance parameters like thermal efficiency, Pm
- Classify various types of boiler, nozzle, steam turbine and condenser used in steam power plant.
- Classify various types of IC engines. Sketch the cut section of typical diesel engine and label its components. Define the terms like TDC, BDC, rc, etc.
- Draw P-v diagram for single-stage reciprocating air compressor, with and without clearance volume, and evaluate its performance. Differentiate between reciprocating and rotary air compressors.
Course Contents:
Unit 1
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Unit 2
Steam Generators
Classification of boilers, boiler details, requirements of a good boiler; merits and demerits of fire tube and water tube boilers, boiler mountings and accessories. Boiler Draught: Classification of draught, natural draught, efficiency of the chimney, draught losses, types of boiler draught. Performance of Boilers: Evaporation, equipment evaporation, boiler efficiency, boiler trial and heat balance, Introduction to IBR.
Unit 3
Vapor and Gas Power Cycles
Carnot cycle, ideal Rankine cycle, Reheat and Regeneration, Stirling cycle, Joule-Brayton cycle. Calculation of thermal efficiency, specific steam/fuel consumption, work ratio for above cycles.
Unit 4
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Unit 5
Steam Turbines
Advantages and classification of steam turbines, compounding of steam turbines, velocity diagrams, work one done and efficiencies, losses in turbines. Condensers and Cooling Towers: Elements of steam condensing plants, advantages of using condensers, types of condensers, thermodynamic analysis of condensers, efficiencies, cooling towers.
Unit 6
Reciprocating Air Compressor
Classification constructional details, theoretical and actual indicator diagram, FAD, multi staging, condition for maximum efficiency, capacity control. Rotary Compressor- Concepts of: Rotary compressors, Root blower and vane type compressors, Centrifugal compressors. Velocity diagram construction and expression for work done, introduction to slip factor, power input factor.
Text Books:
- T. D. Eastop, A. McConkey, Applied Thermodynamics, Addison Wesley Longman.
- Rayner Joel, Basic engineering Thermodynamics, Addison Wesley Longman.
Reference Books:
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 pdf platform to make students’s lives easier..
For detail syllabus of all other subjects of Mechanical Engineering (ME) 4th Sem 2017-18 regulation, visit ME 4th Sem Subjects syllabus for 2017-18 regulation.