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Earthquake Resistant Design of Structures Book 2018 Best Study Materials

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Candidates can get Best Earthquake Resistant Design of Structures Books 2018 also a Top List of Main Study Materials for 2017-2018 entrance exam in India.

  • Earthquake Resistant Design of Structures
    by Shashikant K. Duggal

Syllabus:-

1.

Seismology:

  • Earth’s Interior and Plate Tectonics;
  • Causes of Earthquakes and Seismic Waves; Measurement of Earthquakes and Measurement parameters;
  • Modification of Earthquake due to the Nature of Soil;
  • Seismic Hazard Analysis I;
  • Seismic Hazard Analysis II; Discussion on Tutorial Problems.

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2.

Earthquake Inputs:

  • Time History Records and Frequency Contents of Ground Motion;
  • Power Spectral Density Function of Ground Motion; Concept of Response Spectrums of Earthquake;
  • Combined D‐V‐A Spectrum and Construction of Design Spectrum; Site Specific, Probabilistic and Uniform Hazard Spectrums;
  • Predictive Relationships for earthquake parameters;
  • Discussion on Tutorial Problems.

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3.

Dynamics for Earthquake Analysis:

  • Equations of Motion for SDOF and MDOF Systems; Undamped Free Vibration of SDOF and MDOF Systems;
  • Mode Shapes and Frequencies of MDOF System; Rayleigh Damping Matrix;
  • Direct Time Domain Analysis of MDOF System;
  • Direct Frequency Domain Analysis of MDOF System;
  • Modal Analysis in Time and Frequency Domain;
  • Discussion on Tutorial Problems.

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4.

Response Analysis for Specific Ground Motion:

  • Equations of Motion for Single and Multi‐Support Excitations and Solutions;
  • Equations of Motion in State Space and Solutions;
  • Computational Steps for the Solutions using MATLAB I;
  • Computational Steps for the Solutions using MATLAB II;
  • Time History Analysis of 3D Tall Buildings;
  • Discussion on Tutorial Problems.

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5.

Response Spectrum Method of Analysis:

  • Concept of Equivalent Lateral Force for Earthquake;
  • Modal Combination Rules;
  • Response Spectrum Method of Analysis of Structures and Codal Provisions;
  • Response Spectrum Method of Analysis for Torsionally Coupled Systems;
  • Response Spectrum Method of Analysis for Non‐Classically Damped Systems;
  • Discussion on Tutorial Problems.

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6.

Seismic Soil – Structure Interaction:

  • Fundamentals of Seismic Soil‐Structure Interaction;
  • Direct Method of Analysis of Soil‐Structure Interaction using FEM and Use of ABAQUS Software I;
  • Direct Method of Analysis of Soil‐Structure Interaction using FEM and Use of ABAQUS Software II;
  • Substructuring Method of Analysis of Soil‐Structure Interaction Problem I;
  • Sub‐structuring Method of Analysis of Soil‐Structure Interaction Problem II;
  • Discussion on Tutorial Problems.

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7.

Inelastic Response of Structures for Earthquake Forces:

  • Fundamental Concepts of Inelastic Response Analysis for Earthquake Forces;
  • Solutions of Incremental Equations of Motions for SDOF Systems;
  • Solutions of Incremental Equations of Motions for MDOF Systems;
  • Push over Analysis;
  • Concepts of Ductility and Inelastic Spectrum;
  • Discussion on Tutorial Problems.

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8.

Base isolation for earthquake resistant design of structures:

  • Base isolation concept, isolation systems and their modeling;
  • linear theory of base isolation;
  • stability of elastomeric bearings;
  • codal provisions for seismic isolation, practical applications.

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