Design of Prestressed Concrete Structures Civil 7th Sem Syllabus for BE 2017 Regulation Anna Univ (Professional Elective III) detail syllabus for Civil Engineering (Civil), 2017 regulation is collected from the Anna Univ official website and presented for students of Anna University. The details of the course are: course code (CE8011), Category (PE), Contact Periods/week (3), Teaching hours/week (3), Practical Hours/week (0). The total course credits are given in combined syllabus.
For all other civil 7th sem syllabus for be 2017 regulation anna univ you can visit Civil 7th Sem syllabus for BE 2017 regulation Anna Univ Subjects. For all other Professional Elective III subjects do refer to Professional Elective III. The detail syllabus for design of prestressed concrete structures is as follows.
Course Objective:
- To introduce the need for prestressing in a structure
- To explain the methods, types and advantages of prestressing to the students.
- To make the students to design a prestressed concrete structural elements and systems
- To introduce the students the effect of prestressing in the flexural and shear behaviour of structural elements.
Unit I
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Unit II
Design for Flexure and Shear
Basic assumptions of flexural design – Permissible stresses in steel and concrete as per I.S.1343 Code – Different Types of sections – Design of sections of Type I and Type II post-tensioned and pre tensioned beams – Check for flexural capacity based on I.S. 1343 Code – Influence of Layout of cables in post-tensioned beams – Location of wires in pre-tensioned beams – Design for shear based on I.S. 1343 Code.
Unit III
Deflection and Design of Anchorage Zone
Factors influencing deflections – Short term deflections of uncracked members – Prediction of long term deflections due to creep and shrinkage – Check for serviceability limit states. Determination of anchorage zone stresses in post-tensioned beams – design of anchorage zone reinforcement -Check for transfer bond length in pre-tensioned beams.
Unit IV
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Unit V
Tension and Compression Members
Role of prestressing in members subjected to Tensilr forces and compressive forces – Design of tension and compression members – Tanks, pipes and poles – Partial prestressing – Definition, methods of achieving partial prestressing, merits and demerits of partial prestressing.
Course Outcome:
On successful completion of this course, students will be able to:
- Understand the behaviour of prestressed concrete members and able to analyze the prestressed concrete beams.
- Design the prestressed concrete members for flexure and shear as per the relevant design code (IS 1343).
- Analyze for deflection of prestressed concrete members and design the anchorage zone.
- Analyze and design of composite beams and continuous beams.
- Design of prestressed concrete structures – sleepers, Tanks, pipes and poles.
Text Books:
- Krishna Raju N., “Prestressed concrete”, 5th Edition, Tata McGraw Hill Company, New Delhi, 2012
- Pandit.G.S. and Gupta.S.P., “Prestressed Concrete”, CBS Publishers and Distributers Pvt. Ltd, 2012
References:
- Rajagopalan.N, “Prestressed Concrete”, Narosa Publishing House, 2002.
- Dayaratnam.P., “Prestressed Concrete Structures”, Oxford and IBH, 2013
- Lin T.Y. and Ned.H.Burns, “Design of prestressed Concrete Structures”, Third Edition, Wiley India Pvt. Ltd., New Delhi, 2013.
- IS 1343:1980, Code of Practice for Prestressed Concrete, Bureau of Indian Standards, New Delhi, 2012
- IS 3370- Part 4 (2008) Indian standard Code of practice for concrete structures for the storage of liquid- Design tables, code of practice, bureau of Indian standards, new Delhi.
For detail syllabus of all other subjects of BE Civil, 2017 regulation do visit Civil 7th Sem syllabus for 2017 Regulation.
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