1 | \documentclass[a4paper,10pt]{article} |
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2 | %\usepackage{graphicx} |
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3 | \usepackage{natbib} % si appel à bibtex |
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4 | %\usepackage[francais]{babel} |
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5 | %\usepackage[latin1]{inputenc} % accents directs (é...), avec babel |
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6 | %\usepackage{rotating} |
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7 | |
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8 | \setlength{\hoffset}{-1.in} |
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9 | \setlength{\oddsidemargin}{3.cm} |
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10 | \setlength{\textwidth}{15.cm} |
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11 | \setlength{\marginparsep}{0.mm} |
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12 | \setlength{\marginparwidth}{0.mm} |
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13 | |
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14 | \setlength{\voffset}{-1.in} |
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15 | \setlength{\topmargin}{0.mm} |
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16 | \setlength{\headheight}{0.mm} |
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17 | \setlength{\headsep}{30.mm} |
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18 | \setlength{\textheight}{24.cm} |
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19 | \setlength{\footskip}{1.cm} |
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20 | |
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21 | \setlength{\parindent}{0.mm} |
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22 | \setlength{\parskip}{1 em} |
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23 | \newcommand{\ten}[1]{$\times 10^{#1}$~} |
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24 | \renewcommand{\baselinestretch}{1.} |
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25 | |
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26 | \begin{document} |
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27 | \pagestyle{plain} |
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28 | |
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29 | \begin{center} |
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30 | {\bf \LARGE |
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31 | Documentation for LMDZ, Planets version |
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32 | |
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33 | \vspace{1cm} |
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34 | \Large |
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35 | The upper boundary sponge layer |
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36 | } |
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37 | |
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38 | \vspace{1cm} |
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39 | S\'ebastien Lebonnois |
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40 | |
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41 | \vspace{1cm} |
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42 | Latest version: \today |
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43 | \end{center} |
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44 | |
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45 | %\section{Theoretical aspects} |
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46 | |
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47 | \section{Pratical aspects in the code} |
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48 | |
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49 | The sponge layer is applied at the upper boundary when the \textsf{ok\_strato} |
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50 | flag is set to {\em True} in \textsf{gcm.def} |
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51 | (this parameter also controls the application of a second step in the |
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52 | horizontal dissipation). |
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53 | |
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54 | The tendencies for the upper boundary sponge layer are computed separately in |
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55 | the \textsf{top\_bound.F} routine, called from \textsf{leapfrog.F}. |
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56 | These tendencies are \textsf{dutop}, \textsf{dvtop} and \textsf{dhtop}, in |
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57 | unit/s. |
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58 | |
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59 | Three parameters may be adjusted in the \textsf{gcm.def} file: |
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60 | \begin{itemize} |
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61 | \item \textsf{iflag\_top\_bound}: selects the affected layers. |
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62 | \begin{itemize} |
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63 | \item 1: only the top 4 layers are affected. In this case, the damping rate |
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64 | is divided by 2 in the second layer, 4 in the third and 8 in the fourth. |
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65 | \item 2: layers with pressure lower than 100 times the top pressure. |
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66 | In this case, the damping rate depends linearly on the pressure. |
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67 | \end{itemize} |
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68 | \item \textsf{mode\_top\_bound}: selects how the fields are affected. |
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69 | \begin{itemize} |
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70 | \item 0: No sponge layer is applied. |
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71 | \item 1: Zonal and meridional winds are damped to zero. |
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72 | \item 2: Zonal and meridional winds are damped to their zonally averaged value. |
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73 | \item 3: Temperature, zonal and meridional winds are damped to their zonally |
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74 | averaged value. |
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75 | \end{itemize} |
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76 | \item \textsf{tau\_top\_bound}: damping rate (in /s) in the top layer. |
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77 | \end{itemize} |
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78 | |
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79 | %\begin{thebibliography}{2} |
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80 | %\providecommand{\natexlab}[1]{#1} |
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81 | %\expandafter\ifx\csname urlstyle\endcsname\relax |
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82 | % \providecommand{\doi}[1]{doi:\discretionary{}{}{}#1}\else |
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83 | % \providecommand{\doi}{doi:\discretionary{}{}{}\begingroup |
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84 | % \urlstyle{rm}\Url}\fi |
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85 | |
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86 | %\end{thebibliography} |
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87 | |
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88 | \end{document} |
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