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    Majid T. Manzari (Editor)

    Professor Majid Manzari's Earthquake Engineering and Structures Lab conducts advanced experimental and computational research in earthquake engineering, fatigue and fracture of engineering materials, geomechanics, and geotechnical engineering. Current projects include: multiscale meshfree modeling of geostructures containing liquefiable soils, seismic response of nuclear fuel assemblies, fatigue of aluminum weldments, and development of efficient and robust techniques for implementation of elastoplastic models of engineering materials.  Education B.S., Tehran University, 1984 M.S., Tehran University, 1986 Ph.D., University of California, Davis, 1994Professor Majid Manzari's Earthquake Engineering and Structures Lab conducts advanced experimental and computational research in earthquake engineering, fatigue and fracture of engineering materials, geomechanics, and geotechnical engineering. Current projects include: multiscale meshfree modeling of geostructures containing liquefiable soils, seismic response of nuclear fuel assemblies, fatigue of aluminum weldments, and development of efficient and robust techniques for implementation of elastoplastic models of engineering materials.  Education B.S., Tehran University, 1984 M.S., Tehran University, 1986 Ph.D., University of California, Davis, 1994

    Majid T. Manzari (Editor)

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    Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading

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    Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading

    Bruce L. Kutter (Editor)Majid T. Manzari (Editor)Mourad Zeghal (Editor)

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    Professor Majid Manzari's Earthquake Engineering and Structures Lab conducts advanced experimental and computational research in earthquake engineering, fatigue and fracture of engineering materials, geomechanics, and geotechnical engineering. Current projects include: multiscale meshfree modeling of geostructures containing liquefiable soils, seismic response of nuclear fuel assemblies, fatigue of aluminum weldments, and development of efficient and robust techniques for implementation of elastoplastic models of engineering materials.  Education B.S., Tehran University, 1984 M.S., Tehran University, 1986 Ph.D., University of California, Davis, 1994

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    Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading

    This open access book presents work collected through the Liquefaction Experiments and Analysis Projects (LEAP) in 2017. It addresses the repeatability, variability, and sensitivity of lateral spreading observed in twenty-four centrifuge model tests on mildly sloping liquefiable sand. The centrifuge tests were conducted at nine different centrifuge facilities around the world. For the first time, a sufficient number of experiments were conducted to enable assessment of variability of centrifuge test results. The experimental data provided a unique basis for assessing the capabilities of twelve different simulation platforms for numerical simulation of soil liquefaction. The results of the experiments and the numerical simulations are presented and discussed in papers submitted by the project participants. The work presented in this book was followed by LEAP-Asia that included assessment of a generalized scaling law and culminated in a workshop in Osaka, Japan in March 2019. LEAP-2020, ongoing at the time of printing, is addressing the validation of soil-structure interaction analyses of retaining walls involving a liquefiable soil. A workshop is planned at RPI, USA in 2020.

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