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Advances in Marine Engineering: Geological Environment and Hazards

Advances in Marine Engineering: Geological Environment and Hazards

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With the continuous advancement of coastal, offshore, and deep-sea engineering construction (e.g. marine oil, gas, and mineral resource development, offshore wind power projects), associated studies on marine geological environments and hazards have also advanced in parallel. This reprint“Advances in Marine Engineering: Geological Environment and Hazards” is formed by a Special Issue (SI) that was organized by Prof. Xiaolei Liu from the Ocean University of China, Prof. Thorsten Stoesser from the University College London, and Dr. Xingsen Guo from the University College London to document research advances in the topics of marine engineering, including marine geological environments, marine geological hazards, marine engineering geology, marine hydrodynamics, marine fluid mechanics, and marine geotechnical engineering. The high-quality papers collected in this book involve many classic and innovative methodologies in this research field, including but not limited to analytical and statistical analyses, numerical simulations, laboratory testing, and marine surveys. The book represents the state-of-the-art in the latest research concepts, advanced methods, and data that will contribute greatly to the development of the field of marine geological environments and hazards.

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Keywords

  • analytical solution
  • anisotropic flow
  • attenuation
  • Biot–Stoll model
  • bottom current
  • calcareous sand
  • clay samples
  • CO2 hydrate slurry
  • conformal mapping
  • cumulative axial strain
  • cyclic load
  • cyclic shear test
  • Damping ratio
  • deep-buried tunnel
  • discrete element simulation
  • dynamic loading
  • finite-element analysis
  • frequency dependence
  • gas hydrate
  • gas-hydrate-bearing sediments
  • Groundwater
  • Guangdong coastal zone
  • Herschel–Bulkley-type model
  • high-resolution seismic
  • History of engineering & technology
  • hydrochemistry
  • in-situ investigation
  • initial stiffness
  • laterally loaded piles
  • Low temperature
  • macro-meso
  • mechanical behavior
  • Mechanical properties
  • mini-ball penetration test
  • Multibeam bathymetry
  • n/a
  • nitrate pollution
  • nonlinear formulations
  • normalized behavior
  • Numerical Simulation
  • physical modelling
  • rheology
  • seafloor bedform
  • seafloor sediments
  • seawater intrusion
  • sediment acoustic
  • seepage field
  • shear-thickening
  • silt–steel interface
  • sound speed
  • South China Sea
  • stiffness
  • strength of bound water
  • stress–displacement mechanical properties
  • sub-bottom profile
  • submarine landslide
  • submarine soft soil
  • Technology, engineering, agriculture
  • Technology: general issues
  • the East China Sea
  • triaxial test
  • ultra-high-energy plasma source
  • undrained clay slope
  • undrained shear strength
  • viscosity of free water
  • XGBoost

Links

DOI: 10.3390/books978-3-0365-7057-0

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