Nothing Special   »   [go: up one dir, main page]

Jiang et al., 2022 - Google Patents

Numerical simulations for internal baffle effect on suppressing sway-sloshing coupled motion response

Jiang et al., 2022

Document ID
6948208860272075079
Author
Jiang S
Feng A
Yan B
Publication year
Publication venue
Ocean Engineering

External Links

Snippet

This study investigates the internal baffle effect on reducing sway coupled with sloshing motion response. Various baffle schemes are proposed and the suppressing effect on the sway motion response is studied for a rectangular section box. Numerical simulations …
Continue reading at www.sciencedirect.com (other versions)

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING; COUNTING
    • G06FELECTRICAL DIGITAL DATA PROCESSING
    • G06F17/00Digital computing or data processing equipment or methods, specially adapted for specific functions
    • G06F17/50Computer-aided design
    • G06F17/5009Computer-aided design using simulation

Similar Documents

Publication Publication Date Title
Jiang et al. Numerical simulation of coupling effect between ship motion and liquid sloshing under wave action
Jiang et al. Numerical simulation of wave resonance in the narrow gap between two non-identical boxes
Jiang et al. Numerical simulations for internal baffle effect on suppressing sway-sloshing coupled motion response
Jiang et al. Coupling analysis for sway motion box with internal liquid sloshing under wave actions
Guo et al. Resonant water motions within a recessing type moonpool in a drilling vessel
Wang et al. Numerical simulation of ice loads on a ship in broken ice fields using an elastic ice model
Paulsen et al. Steep wave loads from irregular waves on an offshore wind turbine foundation: computation and experiment
Jiang et al. Influence of a vertical baffle on suppressing sway motion response of a tank coupled with sloshing actions in waves
Jiang et al. On hydrodynamic behavior of fluid resonance in moonpool and its suppression by using various convex appendages
Rivera-Arreba et al. Modeling of a semisubmersible floating offshore wind platform in severe waves
Su et al. Coupling effects of barge motion and sloshing
Li et al. Experimental and numerical investigation of nonlinear diffraction wave loads on a semi-submersible wind turbine
Wang et al. Development of a computational fluid dynamics model to simulate three-dimensional gap resonance driven by surface waves
Wang et al. Numerical simulation of anti-sloshing performance in a 2D rectangular tank with random porous layer
Gao et al. Numerical study of damage ship hydrodynamics
Cakici et al. A new URANS based approach on the prediction of vertical motions of a surface combatant in head waves
Vineesh et al. Numerical investigation of wave interaction with two closely spaced floating boxes using particle method
Ding et al. Study on sloshing simulation in the independent tank for an ice-breaking LNG carrier
Rijnsdorp et al. Non-hydrostatic modelling of the wave-induced response of moored floating structures in coastal waters
Brown et al. Development of a fully nonlinear, coupled numerical model for assessment of floating tidal stream concepts
Huang et al. Application of CFD–FEA coupling to predict hydroelastic responses of a single module VLFS in extreme wave conditions
Peric et al. Simulation of sloshing in LNG-tanks
Moreau et al. An upright bottomless vertical cylinder with baffles floating in waves
Otori et al. Numerical study of hydrodynamic forces and dynamic response for barge type floating platform by computational fluid dynamics and engineering model
Reiersen et al. Investigation of moonpools as pitch motion reducing device