Finite Element Methods.
Analysis and Design of Bridges. Structural Dynamics.
CE xxx. Elective II.
Structural Engineering Laboratory. Elective III.
Elective I. Elective IV. Total Credits:. Semester - 3. Semester 4. M Tech Project - I. M Tech Project - II. Basic concepts of the theory of continuous media; introduction to tensor algebra; theory of stresses; infinitesimal and finite strains; strain-displacement relationships; compatibility; stress-strain relationships; boundary value problem in elasticity; plane stress and plane strain case; stress function approaches; plane problems in Cartesian and polar coordinates; elements of plasticity; yield criteria; flow rule and hardening.
Chandrasekharaiah and L. Timoshenko and J. Introduction to FEM; governing equation and its solution approximations e. Analysis of framed structures: plane stress and plane strain problems; axisymmetric problems; 3D stress analysis; analysis of plate and shell.
Numerical integration and order of integration: error analysis and convergence; computer implementations of algorithms. Application of FEM in dynamics: eigenvalues and orthogonality. Cook, D.
Malkus and M. Zienkiewicz , R. Taylor and J. Pre-requisite: Nil. Clough and J. Anil K.
Rao , Vibration analysis and foundation dynamics, Wheeler, Siniu and R. Scanlan , Wind effects on structures: fundamentals and applications to design, John Wiley and Sons, Harris and G. Bray and R. Dally and W. Displaying Editions 1 - 5 out of 5. Your list has reached the maximum number of items. Please create a new list with a new name; move some items to a new or existing list; or delete some items.
Concrete bridge practice : analysis, design and economics.
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