Structural Dynamics and Earthquake Engineering Civil 8th Sem Syllabus for BE 2017 Regulation Anna Univ (Professional Elective V) 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 (CE8021), 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 8th sem syllabus for be 2017 regulation anna univ you can visit Civil 8th Sem syllabus for BE 2017 regulation Anna Univ Subjects. For all other Professional Elective V subjects do refer to Professional Elective V. The detail syllabus for structural dynamics and earthquake engineering is as follows.
Course Objective:
- To understand the behaviour of dynamic loading. Study the effect of earthquake loading on the behaviour of structures. Understand the codal provisions to design the structures as earthquake resistant.
Unit I
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Unit II
Multi Degree of Freedom System
Formulation of equation of motion for multidegree of freedom (MDOF) system – Evaluation of natural frequencies and modes – Eigen values and Eigen vectors – Response to free and forced vibration of undamped and damped MDOF systems – Modal superposition methods.
Unit III
Introduction To Earthquake Engineering
Elements of Engineering Seismology – Definitions, Introduction to Seismic hazard, Earthquake phenomenon – Seismotectonics – Seismic Instrumentation – Characteristics of Strong Earthquake motion – Estimation of Earthquake Parameters.
Unit IV
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Unit V
Concepts of Earthquake Resistant Design
Causes of damage – Planning considerations/Architectural concept (IS 4326-1NineNine3) – Guidelines for Earthquake resistant design – Earthquake resistant design of masonry buildings – Design consideration – Guidelines – Earthquake resistant design of R.C.C. buildings – Lateral load analysis – Design and detailing (IS 13920:1NineNine3).
Course Outcome:
- Student will develop knowledge in the simulation and mathematical model development.
- Students will be trained to identify, formulate and solve complicated problem.
- Students will be able to understand the role of natural calamity in the damage of structures.
- Students will be able to develop the skill to analyse data and to apply the same in the practical problems.
- Students will be able to apply the developed methodologies for the safe and stable design of structures.
Text Books:
- Mario Paz, Structural Dynamics – Theory and Computations, Fourth Edition, CBS publishers, 1997.
- Agarwal.P and Shrikhande.M. Earthquake Resistant Design of Structures, Prentice Hall of India Pvt. Ltd. 2007.
References:
- Clough.R.W, and Penzien.J, Dynamics of Structures, Second Edition, McGraw Hill International Edition, 1995.
- Jai Krishna, Chandrasekaran.A.R., and Brijesh Chandra, Elements of Earthquake Engineering, South Asia Publishers, 1994.
- Minoru Wakabayashi, Design of Earthquake Resistant Buildings, Mc Graw – Hill Book Company, 1986
- Humar.J.L, Dynamics of Structures, Prentice Hall Inc., 1990.
- Anil K Chopra, Dynamics of structures – Theory and applications to Earthquake Engineering, Prentice Hall Inc., 2007.
- Moorthy.C.V.R., Earthquake Tips, NICEE, IIT Kanpur,2002.
- IS13920-1993 Ductile detailing of reinforced concrete structures subjected to seismic forces – Code of practice.
- IS 1893 part 1 2002 Indian standard criteria for earthquake resistant design of structures.
- IS 4326-1993 Earthquake Resistant Design and Construction of Buildings–Code of Practice (Second Revision)
For detail syllabus of all other subjects of BE Civil, 2017 regulation do visit Civil 8th Sem syllabus for 2017 Regulation.
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