Search Results - "Density"
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Model Tests and Numerical Simulations of Liquefaction and Lateral Spreading LEAP-UCD-2017 /
Published 2020Table of Contents: “…Chapter1: LEAP-UCD-2017 V. 1.01 model specifications -- Chapter2: Grain Size Analysis and Maximum and Minimum Dry Density of Ottawa F-65 Sand for LEAP-UCD-2017 -- Chapter3: Physical and Mechanical Properties of Ottawa F65 Sand -- Chapter4: LEAP-UCD-2017 comparison of centrifuge test results -- Chapter5: Archiving of experimental data for LEAP-UCD-2017 -- Chapter6: Comparison of LEAP-UCD-2017 CPT results -- Chapter7: Difference and Sensitivity Analyses of the LEAP-2017 Experiments -- Chapter8: LEAP-2017 Simulation Exercise - Overview of Guidelines for the element test simulations -- Chapter9: Calibration of Constitutive Models and Simulation of the Element Tests -- Chapter10: LEAP-2017: Comparison of the Type-B Numerical Simulations with Centrifuge Test Results -- Chapter11: Numerical sensitivity study compared to trend of experiments for LEAP-UCD-2017 -- Chapter12: LEAP-UCD-2017 Centrifuge Tests at Cambridge -- Chapter13: LEAP-UCD-2017 Centrifuge Test at University of California, Davis -- Chapter14: LEAP-2017 Centrifuge Test at Ehime University -- Chapter15: LEAP-UCD-2017 Centrifuge Test at IFSTTAR -- Chapter16: LEAP-UCD-2017 Centrifuge Test at KAIST -- Chapter17: LEAP-UCD-2017 Centrifuge Test at Kyoto University -- Chapter18: LEAP-UCD-2017 Centrifuge Tests at NCU -- Chapter19: Verification of the Repeatability of Soil Liquefaction Centrifuge Testing at Rensselaer -- Chapter20: Specifications and Results of Centrifuge Model Test at Zhejiang University for LEAP-UCD-2017 -- Chapter21: Prediction of LEAP-UCD-2017 Centrifuge Test Results Using Two Advanced Plasticity Sand Models -- Chapter22: LEAP-UCD-2017 Centrifuge Test Simulation at UNINA -- Chapter23: LEAP-2017 Centrifuge Test Simulation using HiPER -- Chapter24: Numerical Simulations of Selected LEAP Centrifuge Experiments with PM4Sand in FLAC -- Chapter25: LEAP-UCD-2017 Numerical Simulation at Meisosha Corp.…”
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Beyond 100: The Next Century in Geodesy Proceedings of the IAG General Assembly, Montreal, Canada, July 8-18, 2019 /
Published 2022Table of Contents: “…Part I: Reference Systems and Frames -- Towards an International Height Reference Frame Using Clock Networks -- Towards the realization of the International Height Reference Frame (IHRF) in Argentina -- Comparing Vienna CRF solutions to Gaia-CRF2 -- Co-Location of Space Geodetic Techniques: Studies on Intra-Technique Short Baselines -- Status of IGS Reprocessing Activities at GFZ -- A Wavelet-based Outlier Detection and Noise Component Analysis for GNSS Position Time Series -- Part II: Gravity field modelling -- International Combination Service for Time-variable Gravity Fields (COST-G) - Start of operational phase and future perspectives -- LUH-GRACE2018: a new time series of monthly gravity field solutions from GRACE -- A Precise Geoid Model for Africa: AFRgeo2019 -- Part III: Earth rotation and geodynamics -- A first assessment of the corrections for the consistency of the IAU2000 and IAU2006 precession-nutation models -- Report of the IAU/IAG Joint Working Group on Theory of Earth rotation andvalidation -- Achievements of the first 4 years of the International Geodynamics and Earth Tide Service (IGETS) 2015 - 2019 -- Inter-comparison of ground gravity and vertical height measurements at collocated IGETS stations -- Part IV: Multi-Signal Positioning, Remote Sensing and Applications -- A Benchmarking Measurement Campaign to Support Ubiquitous Localization in GNSS Denied and Indoor Environments -- A method to correct the raw Doppler observations for GNSS velocity determination -- Assessment of a GNSS/INS/Wi-Fi Tight-Integration Method Using Support Vector Machine and Extended Kalman Filter -- Enhancing navigation in difficult environments with low-cost, dual-frequency GNSS PPP and MEMS IMU -- Part V: Monitoring and Understanding the Dynamic Earth with Geodetic Observations -- Water Depletion and Land Subsidence in Iran using Gravity, GNSS, InSAR and Precise Levelling Data -- Past and future sea level changes and land uplift in the Baltic Sea seen by geodetic observations -- Estimation ofLesser Antilles vertical velocity fields using a GNSS-PPP software comparison -- Time variations of the vertical component in Japanese GEONET GNSS sites -- An approximate method to simulate post-seismic deformations in a realistic Earth model -- Geodetic monitoring of the variable surface 1 deformation in Latin America -- Progress in GTEWS ground displacement measurements and tsunami warning -- Part VI: Geodesy for Atmospheric and Hydrospheric Climate Research (IAG, IAMAS, IACS, IAPSO) -- Characterization of the Upper Atmosphere from Neutral and Electron Density Observations -- Tropospheric products from high-level GNSS processing in Latin America -- Can vertical GPS displacements serve as proxies for climate variability in North America? …”
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The Interconnected Arctic - UArctic Congress 2016
Published 2017Table of Contents: “…Geospatial analysis of persistent organic pollutant deposits in the Arctic ecosystems and environment -- Chapter 8 Hydrological probabilistic model MARCS and its application to simulate the probability density functions of multi-year maximal runoff: the Russian Arctic as a case of study -- Chapter 9 Student contribution: Assessment of Atmospheric Circulation in the Atlantic-Eurasian Region and Arctic Using Climate Indices. …”
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Handbook of Mathematical Geosciences Fifty Years of IAMG /
Published 2018Table of Contents: “…Advances in Sensitivity Analysis of Uncertainty due to Sampling Density for Spatially Correlated Attributes -- 23. …”
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