Journal of Applied Mathematics · 2012 · 12 citations · 11 references
Simplified Analytical MethodEngineeringShip ManeuveringImpact (Mechanics)Striking ShipMechanical EngineeringImpact LoadingMarine EngineeringStructural EngineeringNaval ArchitectureMechanicsSystems EngineeringShip Structural DesignShip ImpactsShip ResistanceStrength Of ShipAerospace EngineeringLock GatesShip DesignMaritime AccidentStructural MechanicsMechanics Of Materials
The present paper is concerned with the design of lock gates submitted to ship impacts. In this paper, a simplified analytical method is presented to evaluate the resistance of such structures under collision. The basic idea is to assume that the resistance is first provided through a local deforming mode, corresponding to a localized crushing of some impacted structural elements. For consecutive larger deformations, the resistance is then mostly provided through a global deforming mode, corresponding to an overall movement of the entire gate. For assessing the resistance in the case of the local deforming mode, the structure is divided into a given number of large structural entities called “superelements.” For each of them, a relation between the resistance of the gate and the penetration of the striking ship is established. However, as some results are already available in the literature, this subject is not treated extensively in this paper. On the contrary, the calculation of the resistance of the gate provided through the global mode is detailed and the strategy to switch from local to global deformation is highlighted. Finally, we propose to validate our developments by making a comparison between results obtained numerically and those predicted by the present analytical approach.
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The Mechanics of Ship Collisions
Shengming Zhang, Preben Terndrup Pedersen · 1999 · 143 citations
Ship grounding on rock—I. Theory
Bo Cerup Simonsen · Marine Structures · 1997 · 87 citations
Geotechnical Engineering, Earthquake Engineering, Engineering +7
Plate tearing and bottom damage in ship grounding
Shengming Zhang · Marine Structures · 2002 · 70 citations