Title of article
Fully Nonhydrostatic Modeling of Surface Waves
Author/Authors
Yuan، Hengliang نويسنده , , Wu، Chin H. نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2006
Pages
-446
From page
447
To page
0
Abstract
A fully nonhydrostatic model is tested by simulating a range of surface-wave motions, including linear dispersive waves, nonlinear Stokes waves, wave propagation over bottom topographies, and wave-current interaction. The model uses an efficient implicit method to solve the unsteady, three-dimensional, Navier-Stokes equations and the fully nonlinear free-surface boundary conditions. A new top-layer pressure treatment is incorporated to fully include the nonhydrostatic pressure effect. The model results are verified against either analytical solutions or experimental data. It is found that the model using a small number of vertical layers is capable of accurately simulating both the free-surface elevation and vertical flow structure. By further examining the modelʹs performance of resolving wave dispersion and nonlinearity, the modelʹs efficiency and accuracy are demonstrated.
Keywords
matrix polynomial ixirrsien , cointegration , I(2) representation theorem
Journal title
JOURNAL OF ENGINEERING MECHANICS
Serial Year
2006
Journal title
JOURNAL OF ENGINEERING MECHANICS
Record number
47070
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