Add comparison between keps and komega-sst
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@ -100,8 +100,16 @@ The value of $b$ seems to have a major effect how wave energy is dissipated / ho
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A case with the $k-\omega$ SST turbulence model was run to compare with the $k-\varepsilon$ model.
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A case with the $k-\omega$ SST turbulence model was run to compare with the $k-\varepsilon$ model.
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Results displayed in \autoref{fig:sst}. Significant differences are found between both models.
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Results displayed in \autoref{fig:sst}. Significant differences are found between both models.
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Wave breaking as expected using SST model (\autoref{fig:sst175}). See
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\url{https://public.edgarpierre.fr/anim_olaflow_kom.mp4}
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\begin{figure}
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\begin{figure}
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\centering
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\centering
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\includegraphics{diffsst.pdf}
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\includegraphics{diffsst.pdf}
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\caption{Case 1: $k-\varepsilon$ model; case 2: $k-\omega$ SST model.}\label{fig:sst}
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\caption{$x=\SI{-50}{\m}$. Case 1: $k-\varepsilon$ model; case 2: $k-\omega$ SST model.}\label{fig:sst}
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\end{figure}
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\begin{figure}
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\centering
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\includegraphics{diffsst175.pdf}
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\caption{$t=\SI{175}{\s}$. Case 1: $k-\varepsilon$ model; case 2: $k-\omega$ SST model.}\label{fig:sst175}
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\end{figure}
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\end{figure}
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report/fig/diffsst175.pdf
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report/fig/diffsst175.pdf
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