Syllabus B Tech Civil Eighth Semester Pre-stress Concrete Design CE8003

Civil Engineering Eighth Semester Syllabus

Syllabus B Tech Civil Eighth Semester Pre-stress Concrete Design CE8003

The concepts developed in this course will aid in quantification of several concepts in Civil Engineering that have been introduced at the Engineering courses. Technology is being increasingly based on the latest Syllabus B Tech Civil Eighth Semester Pre-stress Concrete Design CE8003 is given here.

The objective of this course “Syllabus B Tech Civil Eighth Semester Pre-stress Concrete Design CE8003 is to develop ability and gain insight into the process of problem-solving, with emphasis on thermodynamics. Specially in following manner: Apply conservation principles (mass and energy) to evaluate the performance of simple engineering systems and cycles. Evaluate thermodynamic properties of simple homogeneous substances. Analyze processes and cycles using the second law of thermodynamics to determine maximum efficiency and performance. Discuss the physical relevance of the numerical values for the solutions to specific engineering problems and the physical relevance of the problems in general and Critically evaluate the validity of the numerical solutions for specific engineering problems. More precisely, the objectives are:

  • To enable young technocrats to acquire mathematical knowledge to understand Laplace transformation, Inverse Laplace transformation and Fourier Transform which are used in various branches of engineering.
  • To introduce effective mathematical tools for the Numerical Solutions algebraic and transcendental equations.
  • To acquaint the student with mathematical tools available in Statistics needed in various field of science and engineering.

CE 8003 – Pre-stress Concrete Design

Unit 1
Introduction–Theory And Behaviour: Basic concepts, Advantages, Materials required, Systems and methods of pre stressing – Analysis of sections, Stress concept, Strength concept, Load balancing concept, Effect of loading on the tensile stresses in tendons, Effect of tendon profile on deflections, Losses of pre-stress.
Unit 2
Design Concepts: Flexural strength, Simplified procedures as per codes, strain compatibility method, Basic concepts in selection of cross section for bending – stress distribution in end block, Design of anchorage zone reinforcement, Limit state design criteria, Partial pre-stressing Applications.
Unit 3
Pre-stressed Concrete Slabs: One way slab two way slabs, pre-stressed concrete beam slab construction, pre-stressed flat slab, Deflection and Crack Width : Factors influencing deflection, short term deflections of un cracked members, long term deflection, deflections of cracked members.
Unit 4
Miscellaneous Structural Members : Columns subjected to combined bending and axial force, piles, poles, piers and abutments and Tension member-ring beams. Design of prestressed circular concrete tanks – Pipes.
Unit 5
Pre-Stressed Concrete Bridges: General aspects – pre-tensioned pre-stressed bridge decks – Post tensioned post-stressed bridge decks – Principles of design only.

Books Recommended

1. Krishna Raju N., Prestressed concrete, Tata McGraw Hill Company, New Delhi 1998
2. Mallic S.K. and Gupta A.P., Prestressed concrete, Oxford and IBH publishing Co. Pvt. Ltd. 1997.
3. Rajagopalan, N, “Prestressed Concrete”, Alpha Science, 2002
4. Jain & Jai Krishna, Plain & Reinforced Concrete Vol – II Nem chand & Bros Roorkee.
5. P. Dayaratran, Pre-stressed Concrete Structures, Oxford & IBH Co. Delhi
6.Ramaswamy G.S., Modern prestressed concrete design, Arnold Heinimen, New Delhi, 1990
7.Lin T.Y. Design of prestressed concrete structures, Asia Publishing House, Bombay 1995.
8.David A.Sheppard, William R. and Philips, Plant Cast precast and prestressed concrete
9.IS 1343-980 code of Practice for Pre-stressed Concrete < Bureau of India Standards New Delhi.