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2005, ISBN 0521845688, Volume 9780521845687, xix, 454
Hydrodynamics of High-Speed Marine Vehicles, first published in 2006, discusses the three main categories of high-speed marine vehicles - vessels supported by... 
Hydrodynamics | Hydrofoil boats | Ships | Motorboats
Book
Philosophical Transactions: Mathematical, Physical and Engineering Sciences, ISSN 1364-503X, 7/2011, Volume 369, Issue 1947, pp. 2892 - 2919
Journal Article
Ocean Engineering, ISSN 0029-8018, 08/2014, Volume 86, pp. 3 - 10
Throughout the maritime world, considerable efforts have been spent on predicting loads associated with slamming. Up to now, little attention has, however,... 
Benchmark | Model tests | Slamming | Whipping | Flexible backbone | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | OCEANOGRAPHY | SHIP | Vibration | Fatigue (materials) | Horizontal | Maritime | Benchmarking | Mathematical models | Deviation | Estimates
Journal Article
船舶与海洋工程学报:英文版, ISSN 1671-9433, 2017, Volume 16, Issue 4, pp. 427 - 445
Journal Article
Composite Structures, ISSN 0263-8223, 07/2019, Volume 220, pp. 776 - 783
Slamming is a dynamic phenomenon in which a high magnitude pulse peak pressure occurs in a short time duration when the bottom structure of a ship impacted... 
Sandwich plates | Constant impact velocity | Slamming impact | SPH | Fluid-structure interaction | COMPOSITE PANELS | MATERIALS SCIENCE, COMPOSITES | SMOOTHED PARTICLE HYDRODYNAMICS | DYNAMIC-RESPONSE | Engineering Sciences | Materials
Journal Article
Ocean Engineering, ISSN 0029-8018, 08/2016, Volume 122, pp. 322 - 332
Slamming loads on the stern of a chemical tanker are predicted by using an Arbitrary Lagrangian Eulerian (ALE) algorithm implemented in LS-DYNA and a Modified... 
LS-DYNA | Stern slamming | Slamming load | Arbitrary Lagrangian Eulerian algorithm | Modified Longvinovich Model | ENTRY | BOW | VERTICAL SHIP MOTIONS | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | CONTAINERSHIP | OCEANOGRAPHY | WATER IMPACT | LOADS | Tankers | Algorithms | Slamming | Ships | Mathematical analysis | Ocean engineering | Constants | Mathematical models
Journal Article
Ocean Engineering, ISSN 0029-8018, 06/2016, Volume 119, pp. 135 - 142
Journal Article
Ocean Engineering, ISSN 0029-8018, 12/2018, Volume 170, pp. 222 - 236
This study investigates the characteristics of stern slamming pressure, such as occurrence mechanism, space-time distribution and influence of local deadrise... 
Smoothed particle hydrodynamics | Stern slamming | Slamming pressure | Water entry | Following irregular wave | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | OCEANOGRAPHY | SHIP | BOW | LOADS | Wave propagation | Numerical analysis
Journal Article
Ocean Engineering, ISSN 0029-8018, 01/2016, Volume 111, pp. 369 - 383
This paper presents calculations of ship motions, slamming occurrence probability and slamming loads on the bow of a ship hull in irregular waves. The results... 
Bow slamming | Irregular wave | Slamming load | Slamming occurrence | Ship motions | Arbitrary-Lagrangian Eulerian | WATER-ENTRY | VERTICAL MOTIONS | IMPACT | PROBABILITY | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | CONTAINERSHIP | OCEANOGRAPHY | SHIP | Tankers | Algorithms | Slamming | Seas | Computer simulation | Ships | Ocean engineering | Mathematical models
Journal Article
Applied Ergonomics, ISSN 0003-6870, 02/2018, Volume 67, pp. 71 - 82
Journal Article
Marine Structures, ISSN 0951-8339, 07/2019, Volume 66, pp. 227 - 241
Journal Article
Ocean Engineering, ISSN 0029-8018, 06/2018, Volume 158, pp. 311 - 330
Asymmetric impacting phenomenon is quite common for the sailing ship when it encounters oblique waves. The asymmetrical water entry problem of a full scale... 
CFD | Flow separation | Asymmetric impacting | Bow-flared section | FREE-FALL | WATER ENTRY | SIMULATION | FLOW | IMPACT | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | FLUID | OCEANOGRAPHY | SURFACE | BODIES | ROLL ANGLE | WEDGES | Fluid dynamics | Numerical analysis | Container ships
Journal Article
Journal of Fluids and Structures, ISSN 0889-9746, 08/2012, Volume 33, pp. 148 - 179
A synergic 3-D experimental and numerical investigation is conducted for wave–ship interactions involving the water-on-deck and slamming phenomena. The adopted... 
Model tests | Slamming | Numerical solver | Water on deck | Physical investigation | Seakeeping | MECHANICS | ENGINEERING, MECHANICAL | Rest | Ships | Mathematical analysis | Vessels | Solvers | Mathematical models | Three dimensional
Journal Article