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Computational Methods in Earthquake Engineering

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Cover of 'Computational Methods in Earthquake Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 1D Harmonic Response of Layered Inhomogeneous Soil: Exact and Approximate Analytical Solutions
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    Chapter 2 Monitored Incoherency Patterns of Seismic Ground Motion and Dynamic Response of a Long Cable-Stayed Bridge
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    Chapter 3 An Efficient Beam-Column Element for Inelastic 3D Frame Analysis
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    Chapter 4 Floor Response Spectra for Moderately Heavy Nonstructural Elements Attached to Ductile Frame Structures
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    Chapter 5 Seismic Assessment of Steel Moment Frames Using Simplified Nonlinear Models
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    Chapter 6 Computational Methods in Earthquake Engineering
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    Chapter 7 Numerical Determination of the Seismic Strength of Reinforced Concrete Shear Walls with Fractal Cracks
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    Chapter 8 Computational Methods in Earthquake Engineering
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    Chapter 9 Seismic Evaluation of Existing Basement Walls
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    Chapter 10 Modeling of Infilled Framed Structures
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    Chapter 11 Numerical Evaluation of the Seismic Efficiency of Connections of Fractures and Complements of Ancient Colonnades
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    Chapter 12 Computational Methods in Earthquake Engineering
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    Chapter 13 Innovative Computing Environment for Fast and Accurate Prediction of Approximate IDA Curves
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    Chapter 14 Improving Static Pushover Analysis by Optimal Bilinear Fitting of Capacity Curves
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    Chapter 15 Collapse Fragility Curves of RC Frames with Varying Design Parameters
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    Chapter 16 Seismic Risk Assessment of Italian School Buildings
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    Chapter 17 Nonlinear Dynamic Response of MDOF Cable Nets Estimated by Equivalent SDOF Models
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    Chapter 18 Non-linear Model of a Ball Vibration Absorber
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    Chapter 19 Evaluation of Response of an Isolated System Based on Double Curved Surface Sliders
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    Chapter 20 Numerical Investigation of the Effectiveness of Rubber Shock-Absorbers as a Mitigation Measure for Earthquake-Induced Structural Poundings
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    Chapter 21 Seismic Design Methodology for Control of 3D Buildings by Means of Multiple Tuned-Mass-Dampers
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    Chapter 22 Comparison of Innovative Base Isolation Retrofitting Technology with Conventional Retrofitting of Existing Buildings
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    Chapter 23 Preliminary Design of Seismically Isolated R/C Bridges—Features of Relevant Expert System and Experimental Testing of Elastomeric Bearings
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    Chapter 24 Soft Computing in Structural Dynamics
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    Chapter 25 Optimal Design of RC Frames Using Nonlinear Inelastic Analysis
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    Chapter 26 Nonsmooth and Nonconvex Optimization for the Design and Order Reduction of Robust Controllers Used in Smart Structures
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    Chapter 27 A Risk-Based Decision Making Methodology for Planning and Operating Safe Infrastructure Systems Against Various Hazards
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    Chapter 28 On Practical Performance of a Technique for More Efficient Dynamic Analysis in View of Real Seismic Analysis of Bridge Structures
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Title
Computational Methods in Earthquake Engineering
Published by
Springer Netherlands, May 2013
DOI 10.1007/978-94-007-6573-3
ISBNs
978-9-40-076572-6, 978-9-40-076573-3
Editors

Papadrakakis, Manolis, Fragiadakis, Michalis, Plevris, Vagelis

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 142 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Iran, Islamic Republic of 3 2%
India 1 <1%
Italy 1 <1%
Israel 1 <1%
Unknown 136 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 51 36%
Student > Master 23 16%
Researcher 19 13%
Student > Doctoral Student 12 8%
Student > Bachelor 9 6%
Other 28 20%
Readers by discipline Count As %
Engineering 118 83%
Unspecified 12 8%
Earth and Planetary Sciences 7 5%
Mathematics 2 1%
Biochemistry, Genetics and Molecular Biology 1 <1%
Other 2 1%