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Violent Transient Sloshing-Wave Interaction with a Baffle in a Three-Dimensional Numerical Tank
by
XUE Mi-An ZHENG Jinhai LIN Pengzhi XIAO Zhong
in
Baffles
/ Damping
/ Earth and Environmental Science
/ Earth Sciences
/ Excitation
/ Experimental data
/ Fluid flow
/ Fluid mechanics
/ Free surfaces
/ Impact loads
/ Liquid sloshing
/ Mathematical models
/ Meteorology
/ Navier-Stokes equations
/ Numerical analysis
/ Oceanography
/ Surface flow
/ Turbulence
/ Turbulent flow
/ Viscosity
/ Water surface slope
/ Wave interaction
/ 数值研究
/ 有限差分模型
/ 液体晃动
/ 相互作用
/ 瞬态
/ 自由表面流动
/ 障板
/ 非线性晃动
2017
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Violent Transient Sloshing-Wave Interaction with a Baffle in a Three-Dimensional Numerical Tank
by
XUE Mi-An ZHENG Jinhai LIN Pengzhi XIAO Zhong
in
Baffles
/ Damping
/ Earth and Environmental Science
/ Earth Sciences
/ Excitation
/ Experimental data
/ Fluid flow
/ Fluid mechanics
/ Free surfaces
/ Impact loads
/ Liquid sloshing
/ Mathematical models
/ Meteorology
/ Navier-Stokes equations
/ Numerical analysis
/ Oceanography
/ Surface flow
/ Turbulence
/ Turbulent flow
/ Viscosity
/ Water surface slope
/ Wave interaction
/ 数值研究
/ 有限差分模型
/ 液体晃动
/ 相互作用
/ 瞬态
/ 自由表面流动
/ 障板
/ 非线性晃动
2017
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Violent Transient Sloshing-Wave Interaction with a Baffle in a Three-Dimensional Numerical Tank
by
XUE Mi-An ZHENG Jinhai LIN Pengzhi XIAO Zhong
in
Baffles
/ Damping
/ Earth and Environmental Science
/ Earth Sciences
/ Excitation
/ Experimental data
/ Fluid flow
/ Fluid mechanics
/ Free surfaces
/ Impact loads
/ Liquid sloshing
/ Mathematical models
/ Meteorology
/ Navier-Stokes equations
/ Numerical analysis
/ Oceanography
/ Surface flow
/ Turbulence
/ Turbulent flow
/ Viscosity
/ Water surface slope
/ Wave interaction
/ 数值研究
/ 有限差分模型
/ 液体晃动
/ 相互作用
/ 瞬态
/ 自由表面流动
/ 障板
/ 非线性晃动
2017
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Violent Transient Sloshing-Wave Interaction with a Baffle in a Three-Dimensional Numerical Tank
Journal Article
Violent Transient Sloshing-Wave Interaction with a Baffle in a Three-Dimensional Numerical Tank
2017
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Overview
A finite difference model for solving Navier Stokes viscous liquid sloshing-wave interaction with baffles in a tank. equations with turbulence taken into accotmt is used to investigate The volume-of-fluid and virtual boundary force methods are employed to simulate free surface flow interaction with structures. A liquid sloshing experimental apparatus was established to evaluate the accuracy of the proposed model, as well as to study nonlinear sloshing in a prismatic tank with the baffles. Damping effects of sloshing in a rectangular tank with bottom-mounted vertical baffles and vertical baffles touching the free surface are studied numerically and experimentally. Good agreement is obtained between the present numerical results and experimental data. The numerical results match well with the current experimental data for strong nonlinear sloshing with large free surface slopes. The reduction in sloshing-wave elevation and impact pressure induced by the bottom-mounted vertical baffle and the vertical baffle touching the free surface is estimated by varying the external excitation frequency and the location and height of the vertical baffle under horizontal excitation.
Publisher
Science Press,Springer Nature B.V,College of Harbour Coastal and Offshore Engineering, Hohai University, Nanjing 210098, P.R.China%State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, P.R.China%State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, P.R.China,State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, P.R.China%State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Hohai University, Nanjing 210098, P.R.China,State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Hohai University, Nanjing 210098, P.R.China,College of Harbour Coastal and Offshore Engineering, Hohai University, Nanjing 210098, P.R.China
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