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Geological Hazards and Risk Management

Geological Hazards and Risk Management

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The escalating threat of geohazards is propelled by both human activity and global climate change. “Recent Advances in Geohazards and Risk Management" is a reprint that addresses this escalating threat, consolidating international advancements and practical experiences to offer readers a comprehensive guide. The author team, composed of experts in geohazards, disaster risk researchers and policy makers from various countries, utilizes an interdisciplinary approach. They adeptly integrate the latest scientific discoveries with practical case studies, detailing the types, identification, causes, impacts and strategies for the prevention and response to geohazards. Designed for both professional and scholarly growth, this reprint is an indispensable tool. It may be used as a demanding textbook for graduate students or as a comprehensive reference for professionals such as geological and geotechnical engineers, engineering geologists, etc. With this reprint in hand, readers will have the knowledge and direction necessary to handle geohazard threats globally.

This book is included in DOAB.

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Keywords

  • accumulated rainfall
  • artificial neural network
  • Cartography
  • clayey loess
  • Coal mining
  • coseismic landslide hazard
  • desiccation crack
  • development law
  • disaster mechanism
  • drainage system
  • earthquake
  • explainable AI
  • Geophysics
  • GIS
  • global landslide catalog
  • GMT
  • Handan
  • hazard
  • infinite slope model
  • Karst landform
  • Land use change
  • landslide
  • landslide area percentage
  • landslide database
  • landslide inventory
  • landslide number density
  • landslide reporting
  • landslide susceptibility prediction
  • Landslides
  • landslides susceptibility map
  • Lushan earthquake
  • Machine learning
  • machine learning algorithm
  • Microstructure
  • n/a
  • natural and social sustainability
  • Natural disaster
  • non-contact full-filed strain measurement method
  • non-landslide
  • northern Pakistan
  • Numerical Simulation
  • oil and gas pipeline
  • Pakistan
  • peak ground acceleration
  • pipeline oblique crossing landslide
  • probability of failure
  • rainfall-induced landslides
  • rainfall-triggered landslides
  • random forest classifier
  • Risk
  • seismicity
  • slope stability
  • soluble salts NaCl
  • strong motion databank
  • susceptibility
  • sustainability
  • SWMM
  • unloading joint
  • unsaturated soils
  • urban water security
  • volcanic eruption
  • vulnerability

Links

DOI: 10.3390/books978-3-7258-1011-6

Editions

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