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Coupled DEM-CFD Analyses of Landslide-Induced Debris Flows

  1. Title statementCoupled DEM-CFD Analyses of Landslide-Induced Debris Flows [electronic resource] / by Tao Zhao.
    PublicationSingapore : Springer Singapore : Imprint: Springer, 2017.
    Phys.des.XV, 220 p. 132 illus., 82 illus. in color. online resource.
    ISBN9789811046278
    ContentsIntroduction -- Literature Review -- Theory and Methodology -- Calibration of Soil Strength Properties -- Investigation of Dry Granular Flows -- Validation of the DEM-CFD Coupling Method -- Investigation of Submerged Debris Flows -- Conclusions and Recommendations for Future Work.
    Notes to AvailabilityPřístup pouze pro oprávněné uživatele
    Another responsib. SpringerLink (Online service)
    Subj. Headings Engineering. * Natural disasters. * Geotechnical engineering. * Fluid mechanics. * Engineering geology. * Engineering - Geology. * Foundations. * Hydraulics.
    Form, Genre elektronické knihy electronic books
    CountrySingapur
    Languageangličtina
    Document kindElectronic books
    URLPlný text pro studenty a zaměstnance UPOL
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    This book reflects the latest research results in computer modelling of landslide-induced debris flows. The book establishes an understanding of the initiation and propagation mechanisms of landslides by means of numerical simulations, so that mitigation strategies to reduce the long-term losses from landslide hazards can be devised. In this context, the book employs the Discrete Element Method (DEM) and Computational Fluid Dynamics (CFD) to investigate the mechanical and hydraulic behaviour of granular materials involved in landslides – an approach that yields meaningful insights into the flow mechanisms, concerning e.g. the mobilization of sediments, the generation and dissipation of excess pore water pressures, and the evolution of effective stresses. As such, the book provides valuable information, useful methods and robust numerical tools that can be successfully applied in the field of debris flow research.

    Introduction -- Literature Review -- Theory and Methodology -- Calibration of Soil Strength Properties -- Investigation of Dry Granular Flows -- Validation of the DEM-CFD Coupling Method -- Investigation of Submerged Debris Flows -- Conclusions and Recommendations for Future Work.

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