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Ship Flow Calculations and Resistance Minimization by Keun Jae Kim, Chalmers University of Technology, Goteborg, Sweden
Slowly-varying wave drift forces in short crested irregular seas
Calculation of ship viscous resistance using boundary layer theory based on first or higher order approximations
A strip method for the prediction of lateral drift force of a semi-submersible
Computation of the Second-Order steady forces acting on a surface ship in an oblique wave
Motions and hydrodynamic loads of a ship advancing in oblique waves
Prediction of slow drift oscillations of a moored ship in head seas
Prediction of drifting force and moment on an ocean platform floating in oblique waves
The hydrodynamic interaction between two cylindrical bodies floating in beam seas
Hydrodynamic characteristics of prismatic barges
Wave exciting forces and moments on an ocean platform
Numerical simulation of the linear and second-order surface flows around circular cylinders in random waves
The computation of the second-order hydrodynamic forces on a slender ship in waves
Numerical simulation of sloshing flows with impact load
Drag measurements of flat plates with uniform injection of polymer solutions and their direct application to the wall
A fundamental study of the current density distribution of a flowing nonequilibrium plasma
The influence of water depth on the heaving, swaying and rolling motions and the bending moments of ships in regular waves
Added mass for both vertical and horizontal vibration of two dimensional cylinders of curvilinear element sections with chines in a free surface
The influence of water depth on the midship bending moments of a ship moving in longitudinal regular head waves
The influence of water depth on the heaving and pitching motions of a ship moving in longitudinal regular head waves
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