[945] | 1 | % $Id: restarts_with_mrun.tex 949 2012-07-18 10:25:11Z maronga $ |
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| 2 | \input{header_tmp.tex} |
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| 3 | %\input{../header_lectures.tex} |
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| 4 | |
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| 5 | \usepackage[utf8]{inputenc} |
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| 6 | \usepackage{ngerman} |
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| 7 | \usepackage{pgf} |
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| 8 | \usetheme{Dresden} |
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| 9 | \usepackage{subfigure} |
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| 10 | \usepackage{units} |
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| 11 | \usepackage{multimedia} |
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| 12 | \usepackage{hyperref} |
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| 13 | \newcommand{\event}[1]{\newcommand{\eventname}{#1}} |
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| 14 | \usepackage{xmpmulti} |
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| 15 | \usepackage{tikz} |
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| 16 | \usetikzlibrary{shapes,arrows,positioning} |
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| 17 | \usetikzlibrary{decorations.markings} |
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| 18 | \usetikzlibrary{decorations.pathreplacing} |
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| 19 | \def\Tiny{\fontsize{4pt}{4pt}\selectfont} |
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| 20 | \usepackage{amsmath} |
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| 21 | \usepackage{amssymb} |
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| 22 | \usepackage{multicol} |
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| 23 | \usepackage{pdfcomment} |
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| 24 | \usepackage{graphicx} |
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| 25 | \usepackage{listings} |
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| 26 | \lstset{showspaces=false,language=fortran,basicstyle= |
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| 27 | \ttfamily,showstringspaces=false,captionpos=b} |
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| 28 | |
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| 29 | \institute{Institut fÌr Meteorologie und Klimatologie, Leibniz UniversitÀt Hannover} |
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| 30 | \date{last update: \today} |
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| 31 | \event{PALM Seminar} |
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| 32 | \setbeamertemplate{navigation symbols}{} |
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| 33 | |
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| 34 | \setbeamertemplate{footline} |
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| 35 | { |
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| 36 | \begin{beamercolorbox}[rightskip=-0.1cm]& |
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| 37 | {\includegraphics[height=0.65cm]{imuk_logo.pdf}\hfill \includegraphics[height=0.65cm]{luh_logo.pdf}} |
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| 38 | \end{beamercolorbox} |
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| 39 | \begin{beamercolorbox}[ht=2.5ex,dp=1.125ex, |
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| 40 | leftskip=.3cm,rightskip=0.3cm plus1fil]{title in head/foot} |
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| 41 | {\leavevmode{\usebeamerfont{author in head/foot}\insertshortauthor} \hfill \eventname \hfill \insertframenumber \; / \inserttotalframenumber} |
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| 42 | \end{beamercolorbox} |
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| 43 | \begin{beamercolorbox}[colsep=1.5pt]{lower separation line foot} |
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| 44 | \end{beamercolorbox} |
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| 45 | } |
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| 46 | %\logo{\includegraphics[width=0.3\textwidth]{luhimuk_logo.pdf}} |
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| 47 | |
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| 48 | \title[Carrying out restart runs with mrun]{Carrying out restart runs with \texttt{mrun}} |
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| 49 | \author{Siegfried Raasch} |
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| 50 | |
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| 51 | \begin{document} |
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| 52 | |
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| 53 | % Folie 1 |
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| 54 | \begin{frame} |
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| 55 | \titlepage |
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| 56 | \end{frame} |
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| 57 | |
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| 58 | \section{Carrying out restart runs with mrun} |
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| 59 | \subsection{Carrying out restart runs with mrun} |
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| 60 | |
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| 61 | |
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| 62 | |
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| 63 | % Folie 2 |
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| 64 | \begin{frame} |
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| 65 | \frametitle{Definition of ârestart runâ} |
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| 66 | |
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| 67 | \begin{itemize} |
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| 68 | \item<1-> A \textbf{ârestart runâ} is a model run, which starts with an initial condition given by the simulated flow at the end of a previous (restart or initial) run. |
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| 69 | \item<2-> In order to carry out a restart run, a file has to be written at the end of the previous run, which contains the values of all flow variables at the necessary time steps (Runge-Kutta: $t$, leap-frog: $t$, $t-\Delta t$). This file has to be read at the beginning of the restart run. |
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| 70 | \item<3-> Initial and respective restart runs form a so called \textbf{job chain}. |
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| 71 | \end{itemize} |
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| 72 | |
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| 73 | \end{frame} |
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| 74 | |
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| 75 | |
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| 76 | % Folie 3 |
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| 77 | \begin{frame} |
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| 78 | \frametitle{Reasons for Restart Runs} |
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| 79 | |
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| 80 | \begin{itemize} |
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| 81 | \item<1-> The maximum job time is generally limited by the queuing system: |
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| 82 | \begin{itemize} |
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| 83 | \item<1-> simulations must be split into several parts |
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| 84 | \end{itemize} |
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| 85 | \item<2-> The user wants to carry out several runs on the basis of the same initial temporal development: |
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| 86 | \begin{itemize} |
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| 87 | \item<1-> the initial phase needs to be simulated only once, |
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| 88 | all runs start from the end point of this initial phase by reading the flow field data written at the end of the initial run |
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| 89 | \end{itemize} |
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| 90 | \end{itemize} |
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| 91 | |
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| 92 | \end{frame} |
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| 93 | |
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| 94 | |
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| 95 | % Folie 4 (Zu voll)? |
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| 96 | \begin{frame} |
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| 97 | \frametitle{Carrying Out Restart Runs With \texttt{mrun}} |
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| 98 | \scriptsize |
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| 99 | |
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| 100 | Concerning \texttt{mrun}, the first thing required to enable restart runs is to use the additional activating string \grqq \texttt{restart}\grqq\, in the \texttt{mrun}-call for the \underline{initial run}:\\ |
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| 101 | \quad \texttt{mrun -d test ... -r ''d3\# restart''}\\ |
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| 102 | This will have the following effects: |
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| 103 | \vspace{2mm} |
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| 104 | \begin{itemize} |
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| 105 | \item<2-> At the end of the run, all necessary variables will bei written as binary data to the local file \texttt{BINOUT}. This is caused by an entry in the configuration file\\ |
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| 106 | \quad \texttt{\%write\underline{ }binary true restart}\\ |
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| 107 | which sets the environment variable \texttt{write\underline{ }binary}, which is in turn read by PALM from the local file \texttt{ENVPAR} created by \texttt{mrun}. |
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| 108 | \item<3-> This binary file will be permanently stored in case that an appropriate file connection statement exists\\ |
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| 109 | \begin{columns} |
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| 110 | \column{1.05\textwidth} |
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| 111 | \texttt{BINOUT out:loc:flpe restart \~{}/palm/current\underline{ }version/JOBS/\$fname/RESTART \underline{ }d3d} |
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| 112 | \end{columns} |
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| 113 | \item<4-> If, during the run, PALM detects that the simulation cannot be finished due to limited job time, it tells \texttt{mrun} (by creating a local file named \texttt{CONTINUE\underline{ }RUN}) that a restart job has to be started. \texttt{mrun} will then automatically start such a job by submitting the command\\ |
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| 114 | \quad \texttt{mrun -d test ... -r ''d3f restart''}\\ |
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| 115 | on the \textbf{local host}. Options of this command are nearly the same as of the initial run, but every sharp symbol (\grqq\#\grqq) in the activating strings is replaced by an \grqq f\grqq. |
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| 116 | \end{itemize} |
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| 117 | \onslide<5->\textcolor{red}{\textbf{This effects the activation of file connections for the restart job!}} |
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| 118 | \end{frame} |
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| 119 | |
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| 120 | |
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| 121 | % Folie 5 |
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| 122 | \begin{frame} |
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| 123 | \frametitle{Input Files Necessary For Restart Jobs} |
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| 124 | \scriptsize |
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| 125 | \vspace{3mm} |
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| 126 | File connection statements for input files from the default \texttt{.mrun.config} file:\\ |
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| 127 | \quad \texttt{PARIN \hspace{0.5em} in:job \hspace{3em} d3\# \hspace{0.5em} \$base\underline{ }data/\$fname/INPUT \hspace{1.5em} \underline{ }p3d}\\ |
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| 128 | \quad \texttt{PARIN \hspace{0.5em} in:job \hspace{3em} d3f \hspace{0.5em} \$base\underline{ }data/\$fname/INPUT \hspace{1.5em} \underline{ }p3df}\\ |
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| 129 | \quad \texttt{BININ \hspace{0.5em} in:loc:flpe \hspace{0.5em} d3f \hspace{0.5em} \$base\underline{ }data/\$fname/RESTART \hspace{0.5em} \underline{ }d3d}\\ |
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| 130 | \vspace{4mm} |
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| 131 | \begin{itemize} |
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| 132 | \item<2-> For the restart job, the model receives a different parameter file than for the initial job (e.g. \texttt{example\underline{ }cbl\underline{ }p3d\textcolor{blue}{f}} instead of \texttt{example\underline{ }cbl\underline{ }p3d}).\\ |
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| 133 | \vspace{2mm} |
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| 134 | The parameter file for the restart job is nearly the same as for the initial run, but it must contain the parameter setting\\ |
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| 135 | \quad \texttt{initializing\underline{ }actions = 'read\underline{ }restart\underline{ }data'}\\ |
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| 136 | in the \texttt{\&inipar}-NAMELIST-group. All other \texttt{\&inipar}-parameter-settings are ignored!\\ |
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| 137 | \vspace{2mm} |
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| 138 | \texttt{\&d3par}-parameter values can freely be changed compared with the parameter file for the initial run.\\ |
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| 139 | \vspace{4mm} |
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| 140 | \item<3-> Input binary data file (\texttt{BININ}) is necessary (and available) only for restart jobs |
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| 141 | \end{itemize} |
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| 142 | \end{frame} |
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| 143 | |
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| 144 | |
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| 145 | % Folie 6 |
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| 146 | \begin{frame} |
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| 147 | \frametitle{Output File Handling in Restart Jobs } |
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| 148 | \scriptsize |
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| 149 | \vspace{2mm} |
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| 150 | Example for output file connection statements from the default \texttt{.mrun.config} file:\\ |
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| 151 | \vspace{2mm} |
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| 152 | \quad \texttt{RUN\underline{ }CONTROL \hspace{0.5em} out:loc:tr \hspace{1em} d3\# \hspace{0.5em} \$base\underline{ }data/\$fname/MONITORING \hspace{0.5em} \underline{ }rc}\\ |
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| 153 | \quad \texttt{RUN\underline{ }CONTROL \hspace{0.5em} out:loc:tra \hspace{0.5em} d3f \hspace{0.5em} \$base\underline{ }data/\$fname/MONITORING \hspace{0.5em} \underline{ }rc}\\ |
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| 154 | \vspace{2mm} |
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| 155 | In case of restart jobs, the contents of many local output files are appended to the respective permanent files from the initial or previous run by using the \texttt{tra} file attribute.\\ |
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| 156 | \vspace{6mm} |
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| 157 | \onslide<2-> File connection statement example for appending netCDF files when PALM is running on a remote host:\\ |
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| 158 | \quad \texttt{DATA\underline{ }1D\underline{ }PR\underline{ }NETCDF\hspace{1em}in:loc\hspace{2.5em}prf\hspace{3em}\$base\underline{ }data/\$fname/OUTPUT\hspace{0.5em}\underline{ }pr\hspace{0.5em}nc}\\ |
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| 159 | \quad \texttt{DATA\underline{ }1D\underline{ }PR\underline{ }NETCDF\hspace{1em}out:loc\hspace{2em}pr\#:prf\hspace{1em}\$base\underline{ }data/\$fname/OUTPUT\hspace{0.5em}\underline{ }pr\hspace{0.5em}nc}\\ |
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| 160 | \quad \texttt{DATA\underline{ }1D\underline{ }PR\underline{ }NETCDF\hspace{1em}out:loc:tr\hspace{0.5em}pr\#:prf\hspace{1em}\$base\underline{ }data/\$fname/OUTPUT\hspace{0.5em}\underline{ }pr\hspace{0.5em}nc}\\ |
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| 161 | \vspace{2mm} |
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| 162 | The netCDF file from the respective previous run has to be provided as an INPUT file.\\ |
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| 163 | \vspace{2mm} |
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| 164 | Therefore, if running PALM on a remote host, a copy of this data file must be additionally stored on the remote host (second statement). On the local host, each run creates a new file (cycle) which contains the complete data from the current run and all previous runs. |
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| 165 | |
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| 166 | \end{frame} |
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| 167 | |
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| 168 | |
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| 169 | % Folie 7 (Zu voll?) |
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| 170 | \begin{frame} |
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| 171 | \frametitle{Handling of Large Binary Data Files} |
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| 172 | \scriptsize |
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| 173 | \begin{columns} |
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| 174 | \column{1.1\textwidth} |
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| 175 | \begin{itemize} |
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| 176 | \item<1-> Typically, the binary restart files are very large, so that they cannot be stored in the user's home-directory because of limited file quotas. Also, hard disks where \texttt{/home} is stored are typically very slow, so that the copy process needs very long time. |
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| 177 | \item<2-> Using the file attribute \texttt{fl} (abbreviation for german \grqq Fortsetzungslauf\grqq) in the output file connection statement causes \texttt{mrun} to copy the local file to a special directory, which can be defined in the configuration file by the environment variable \texttt{tmp\underline{ }data\underline{ }catalog}. The permanent file described in the connection statement is also created, but it is \textbf{empty}. |
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| 178 | \item<3-> At the end of the job, the second last cycle of the respective file with attribute \texttt{fl} is automatically deleted by \texttt{mrun} from the \texttt{tmp\underline{ }data\underline{ }catalog} in order to spare disc space. This can be prevented by setting the \texttt{mrun}-option \grqq\texttt{-k}\grqq (keep data from previous run). |
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| 179 | \end{itemize} |
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| 180 | \end{columns} |
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| 181 | \ \\ |
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| 182 | \onslide<4-> \textbf{Example:}\\ |
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| 183 | \tiny \quad \texttt{\%base\underline{ }data\hspace{4.5em}\~{}/palm/current\underline{ }version/JOBS}\\ |
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| 184 | \tiny \quad \texttt{\%tmp\underline{ }data\underline{ }catalog\hspace{1.0em}/gfs2/work/niksiraa/palm\underline{ }restart\underline{ }data}\\ |
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| 185 | \vspace{1mm} |
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| 186 | \tiny \quad \texttt{BINOUT\hspace{1.0em}out:loc:flpe\hspace{1.0em}restart\hspace{1.0em}\$base\underline{ }data/\$fname/RESTART\hspace{1.0em}\underline{ }d3d}\\ |
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| 187 | \ \\ |
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| 188 | \onslide<5-> \scriptsize \textbf{Files (directories) created when using \texttt{-d example\underline{ }cbl}:} \\ |
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| 189 | \tiny \quad \texttt{/gfs2/work/niksiraa/palm\underline{ }restart\underline{ }data/example\underline{ }cbl\underline{ }d3d}\\ |
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| 190 | \tiny \quad \texttt{\~{}/palm/current\underline{ }version/JOBS/example/RESTART/example\underline{ }cbl\underline{ }d3d \# empty file (directory)}\\ |
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| 191 | \vspace{1mm} |
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| 192 | \onslide<6-> \scriptsize \textcolor{red}{Concerning input files, \texttt{mrun} always determines the current cycle number to be \underline{used from the contents of the directory defined by the file connection statement!}} |
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| 193 | |
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| 194 | \end{frame} |
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| 195 | |
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| 196 | |
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| 197 | % Folie 8 |
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| 198 | \begin{frame} |
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| 199 | \frametitle{Checking the Restart Job Execution} |
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| 200 | \scriptsize |
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| 201 | \begin{itemize} |
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| 202 | \item essentially by looking at the messages in the job protocol file: |
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| 203 | \end{itemize} |
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| 204 | |
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| 205 | \centering |
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| 206 | \includegraphics[width=0.93\textwidth]{restarts_with_mrun_figures/checking.png} |
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| 207 | \begin{tikzpicture}[remember picture, overlay] |
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| 208 | \node[rectangle, draw,text width=0.29\textwidth, fill=white] at (-18mm,62mm) {\noindent \scriptsize In this example, restart time has been set |
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| 209 | |
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| 210 | manually by the user.}; |
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| 211 | \end{tikzpicture} |
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| 212 | |
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| 213 | \end{frame} |
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| 214 | |
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| 215 | |
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| 216 | % Folie 9 |
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| 217 | \begin{frame} |
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| 218 | \frametitle{Setting the Restart Time Manually} |
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| 219 | \scriptsize |
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| 220 | \begin{columns} |
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| 221 | \column{1.07\textwidth} |
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| 222 | \begin{itemize} |
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| 223 | \item<1-> By default, PALM checks after every timestep, if enough time remains from the job cpu limit to carry out the next timestep:\\ |
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| 224 | \quad \grqq\texttt{total job time}\grqq\, - \grqq\texttt{time already consumed}\grqq\, $\leftarrow$ \texttt{termination\underline{ }time\underline{ }needed}\\ |
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| 225 | (as given by \texttt{mrun}-option \texttt{-t} ...) \hspace{5mm} (as given by parameter in \texttt{\&d3par}-NAMELIST) |
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| 226 | \item<2-> \texttt{termination\underline{ }time\underline{ }needed} has to include the cpu time needed before running PALM (e.g. for compilation, copying of input data, etc.; default value: 300 s)!\\ |
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| 227 | \ \\ |
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| 228 | \onslide<3-> \textbf{Warning:}\\ |
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| 229 | \quad \quad \grqq\texttt{total job time}\grqq\, $\leftarrow$ \texttt{termination\underline{ }time\underline{ }needed},\\ |
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| 230 | \quad forces a restart after the first timestep! |
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| 231 | \item<4-> \texttt{\&d3par}-parameters \texttt{restart\underline{ }time} and \texttt{dt\underline{ }restart} can be used to set restart time(s) manually. |
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| 232 | \item<5-> In case of manually setting the restart time, the default checking (see above) is still active and a restart will be automatically forced if the job reaches its cpu limit, even if the manually set restart time has not been reached! |
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| 233 | \end{itemize} |
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| 234 | \end{columns} |
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| 235 | \end{frame} |
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| 236 | |
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| 237 | |
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| 238 | % Folie 10 |
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| 239 | \begin{frame} |
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| 240 | \frametitle{Starting Restart Jobs Manually} |
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| 241 | \scriptsize |
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| 242 | \begin{itemize} |
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| 243 | \item<1-> After a job has finished (\texttt{end\underline{ }time} has been reached), the user can submit a restart job manually (provided that restart data have been saved) by entering:\\ |
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| 244 | \vspace{2mm} |
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| 245 | \quad \texttt{mrun ... -r ''d3f ...'' ...}\\ |
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| 246 | or\\ |
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| 247 | \quad \texttt{mrun ... -r ''d3f restart ...'' ...}\\ |
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| 248 | \ \\ |
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| 249 | \item<2-> Remember to increase the value of \texttt{end\underline{ }time} in the parameter file before submitting the job. |
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| 250 | \item<3-> If a manually started restart job shall continue a run of a former job chain which is somewhere in the middle of this chain, all binary files with respective higher cycle numbers have to be deleted or removed from their respective directories. |
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| 251 | \end{itemize} |
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| 252 | \end{frame} |
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| 253 | |
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| 254 | \end{document} |
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