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Stability and Seakeeping of Marine Vessels

Stability and Seakeeping of Marine Vessels

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This book presents the papers accepted into the Special Issue “Stability and Seakeeping of Marine Vessels” and includes nine contributions to this Special Issue published in 2020. The overall aim of the collection is to improve knowledge about the most relevant and recent topics in ship stability and seakeeping. Specifically, the articles cover a wide range of topics and reflect the recent scientific efforts in the 2nd generation intact stability criteria evaluation and modelling of the ship dynamics assessment in intact or damaged conditions. These topics were investigated mainly through direct assessments performed both via numerical methods and tools, and experimental approaches. The book is addressed to individuals from universities, research organizations, industry, government agencies and certifying authorities, as well as designers, operators and owners who contribute to improved knowledge about “stability and seakeeping”.

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Keywords

  • adaptive weather routing
  • added resistance in waves
  • barge platform
  • BEM
  • bottom damage
  • boundary element method
  • coastal patrol ship (CPS)
  • container ship
  • Cummins equations
  • desingularized Rankine panel method
  • Dijkstra algorithm
  • direct stability assessment
  • experimental seakeeping
  • flooding process
  • forward speed
  • full-scale seakeeping trials
  • hard chine displacement hull form
  • hydrodynamic performance
  • motion response
  • n/a
  • nonlinear steady flow
  • operational guidance
  • operational limitations
  • overset mesh
  • potential flow theory
  • radiation and diffraction
  • RANS
  • regular wave
  • Ro-Ro ferry
  • route optimization
  • sea states
  • seakeeping
  • Seakeeping Performance Index
  • second generation intact stability criteria
  • ship design
  • side damage
  • strip theory
  • Technology, engineering, agriculture
  • Technology: general issues
  • time domain simulations
  • URANS
  • variation of ship characteristics
  • vertical motions assessment
  • VOF
  • vulnerability levels
  • zero-pressurized air cushion

Links

DOI: 10.3390/books978-3-0365-0971-6

Editions

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