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Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading

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Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 LEAP-UCD-2017 V. 1.01 Model Specifications
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    Chapter 2 Grain Size Analysis and Maximum and Minimum Dry Density Testing of Ottawa F-65 Sand for LEAP-UCD-2017
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    Chapter 3 Physical and Mechanical Properties of Ottawa F65 Sand
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    Chapter 4 LEAP-UCD-2017 Comparison of Centrifuge Test Results
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    Chapter 5 Archiving of Experimental Data for LEAP-UCD-2017
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    Chapter 6 Comparison of LEAP-UCD-2017 CPT Results
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    Chapter 7 Difference and Sensitivity Analyses of the LEAP-2017 Experiments
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    Chapter 8 LEAP-2017 Simulation Exercise: Overview of Guidelines for the Element Test Simulations
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    Chapter 9 LEAP-2017 Simulation Exercise: Calibration of Constitutive Models and Simulation of the Element Tests
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    Chapter 10 LEAP-2017: Comparison of the Type-B Numerical Simulations with Centrifuge Test Results
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    Chapter 11 Numerical Sensitivity Study Compared to Trend of Experiments for LEAP-UCD-2017
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    Chapter 12 LEAP-UCD-2017 Centrifuge Tests at Cambridge
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    Chapter 13 LEAP-UCD-2017 Centrifuge Test at University of California, Davis
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    Chapter 14 LEAP-2017 Centrifuge Test at Ehime University
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    Chapter 15 LEAP-UCD-2017 Centrifuge Test at IFSTTAR
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    Chapter 16 LEAP-UCD-2017 Centrifuge Test at KAIST
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    Chapter 17 LEAP-UCD-2017 Centrifuge Test at Kyoto University
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    Chapter 18 LEAP-UCD-2017 Centrifuge Tests at NCU
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    Chapter 19 Verification of the Repeatability of Soil Liquefaction Centrifuge Testing at Rensselaer
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    Chapter 20 Specifications and Results of Centrifuge Model Test at Zhejiang University for LEAP-UCD-2017
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    Chapter 21 Prediction of LEAP-UCD-2017 Centrifuge Test Results Using Two Advanced Plasticity Sand Models
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    Chapter 22 LEAP-UCD-2017 Centrifuge Test Simulation at UNINA
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    Chapter 23 LEAP-2017 Centrifuge Test Simulation Using HiPER
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    Chapter 24 Numerical Simulations of Selected LEAP Centrifuge Experiments with PM4Sand in FLAC
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    Chapter 25 LEAP-UCD-2017 Numerical Simulation at Meisosha Corp
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    Chapter 26 Numerical Simulations of LEAP Dynamic Centrifuge Model Tests for Response of Liquefiable Sloping Ground
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    Chapter 27 LEAP-UCD-2017 Simulation Team Fugro
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    Chapter 28 LEAP-UCD-2017 Type-B Predictions Through FLIP at Kyoto University
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    Chapter 29 LEAP-UCD-2017 Simulations at Tsinghua University
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    Chapter 30 Application of a SANISAND Model for Numerical Simulations of the LEAP 2017 Experiments
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    Chapter 31 Numerical Simulation Trial by Cocktail Glass Model in FLIP ROSE for LEAP-UCD-2017
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    Chapter 32 Preliminary Seismic Deformation and Soil-Structure Interaction Evaluations of a Caisson-Supported Marine Terminal Wharf Retaining and Founded on Liquefiable Soils
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    Chapter 33 Significance of Calibration Procedure Consistency
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    Chapter 34 Paths Forward for Evaluating Seismic Performance of Geotechnical Structures
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    Chapter 35 Selected Issues in the Seismic Evaluation of Embankment Dams for Possible Investigation by LEAP
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    Chapter 36 Soil Permeability in Centrifuge Modeling
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    Chapter 37 Variation of Permeability of Viscous Fluid During Liquefaction Model Testing
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    Chapter 38 Post-liquefaction Cyclic Shear Strain: Phenomenon and Mechanism
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Title
Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading
Published by
Springer International Publishing, September 2019
DOI 10.1007/978-3-030-22818-7
ISBNs
978-3-03-022817-0, 978-3-03-022818-7
Editors

Kutter, Bruce L., Manzari, Majid T., Zeghal, Mourad

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 81 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 81 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 18 22%
Student > Ph. D. Student 16 20%
Student > Doctoral Student 7 9%
Researcher 5 6%
Student > Bachelor 4 5%
Other 11 14%
Unknown 20 25%
Readers by discipline Count As %
Engineering 49 60%
Social Sciences 3 4%
Materials Science 2 2%
Mathematics 1 1%
Environmental Science 1 1%
Other 3 4%
Unknown 22 27%