source: palm/trunk/TUTORIAL/SOURCE/exercise_topography.tex @ 1515

Last change on this file since 1515 was 1515, checked in by boeske, 9 years ago

several updates in the tutorial

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[973]1%$Id: exercise_topography.tex 1515 2015-01-02 11:35:51Z boeske $
2\input{header_tmp.tex}
3%\input{../header_lectures.tex}
4
5\usepackage[utf8]{inputenc}
6\usepackage{ngerman}
7\usepackage{pgf}
8\usepackage{subfigure}
9\usepackage{units}
10\usepackage{multimedia}
11\usepackage{hyperref}
12\newcommand{\event}[1]{\newcommand{\eventname}{#1}}
13\usepackage{xmpmulti}
14\usepackage{tikz}
15\usetikzlibrary{shapes,arrows,positioning,decorations.pathreplacing}
16\def\Tiny{\fontsize{4pt}{4pt}\selectfont}
17
18%---------- neue Pakete
19\usepackage{amsmath}
20\usepackage{amssymb}
21\usepackage{multicol}
22\usepackage{pdfcomment}
23\usepackage{xcolor}
24
[1515]25\institute{Institute of Meteorology and Climatology, Leibniz UniversitÀt Hannover}
26\selectlanguage{english}
[973]27\date{last update: \today}
28\event{PALM Seminar}
29\setbeamertemplate{navigation symbols}{}
30\setbeamersize{text margin left=.5cm,text margin right=.2cm}
31\setbeamertemplate{footline}
32  {%
33    \begin{beamercolorbox}[rightskip=-0.1cm]&
34     {\includegraphics[height=0.65cm]{imuk_logo.pdf}\hfill \includegraphics[height=0.65cm]{luh_logo.pdf}}
35    \end{beamercolorbox}
36    \begin{beamercolorbox}[ht=2.5ex,dp=1.125ex,%
37      leftskip=.3cm,rightskip=0.3cm plus1fil]{title in head/foot}%
38      {\leavevmode{\usebeamerfont{author in head/foot}\insertshortauthor} \hfill \eventname \hfill \insertframenumber \; / \inserttotalframenumber}%
39    \end{beamercolorbox}%
40%    \begin{beamercolorbox}[colsep=1.5pt]{lower separation line foot}%
41%    \end{beamercolorbox}
42  }%\logo{\includegraphics[width=0.3\textwidth]{luhimuk_logo.eps}}
43
44\title[Exercise - Topography]{Exercise - Topography}
[1515]45\author{PALM group}
[973]46
47% Notes:
48% jede subsection bekommt einen punkt im menu (vertikal ausgerichtet.
49% jeder frame in einer subsection bekommt einen punkt (horizontal ausgerichtet)
50\begin{document}
51% Folie 1
52\begin{frame}
53\titlepage
54\end{frame}
55
56\section{Exercise}
57\subsection{Exercise}
58
59% Folie 2
60\begin{frame}
61   \frametitle{Exercise}
62   Please carry out \textbf{two runs} with following conditions.
63   \begin{itemize}
[1515]64      \item<2->{Single cube}
[973]65      \begin{itemize}
66         \item[1.)]{First run ''generic'' using {\tt topography = 'single\_building'}}
67         \item[2.)]{Second run ''raster'' using {\tt topography = 'read\_from\_file'}
68                   with ASCII file ...\_topo}
69      \end{itemize}
[1515]70      \item<3->{Neutral boundary layer in a channel}
71      \item<4->{Constant bulk velocity}
72      \item<5->{No Coriolis force}
73      \item<6->{Simulation features:}
[973]74      \begin{itemize}
75         \item{domain size: (80 m)$^3$ (x/y/z)}
76         \item{grid size: 2 m equidistant}
77         \item{cube: size (40 m)$^3$, location centered in the domain center}
78         \item{simulated time: 7200 s}
79         \item{initial velocity: u = 1, v = 0 m/s}
80      \end{itemize}
81   \end{itemize}
[1515]82   \onslide<7->\textbf{Please use the same building (size, location) for both runs!}
[973]83\end{frame}
84
85% Folie 3
86\begin{frame}
87   \frametitle{Questions to be Answered}
88   \small
89   \begin{itemize}
[1515]90      \item<2->{Can you identify flow convergence / divergence patterns near the cube?}
[973]91      \begin{itemize}
92         \item{What kind of output do you need to answer this?}
93      \end{itemize}
[1515]94      \item<3->{How does the horizontally and temporally averaged momentum flux profile look
[973]95            like?}
96      \begin{itemize}
97         \item{How long should the averaging time interval be?}
98      \end{itemize}
[1515]99      \item<4->{Is it really a large-eddy simulation?}
[973]100      \begin{itemize}
101         \item{Are the subgrid-scale fluxes much smaller than the resolved-scale fluxes?}
102         \item{How do the total kinetic energy and the maximum velocity components change
103               with time?}
104      \end{itemize}
105   \end{itemize}
[1515]106   \onslide<5->\textbf{Final question:}
[973]107   \begin{itemize}
108      \item{Do the results of both runs agree?}
109   \end{itemize}
110\end{frame}
111
112% Folie 4
[1515]113\begin{frame}
114   \frametitle{Hints (I)}
115   \scriptsize
116   \begin{itemize}
117      \item<2->{\textbf{Domain size}}
118      \begin{itemize}
119         \scriptsize
120         \item{Is controlled by grid size (\textbf{dx}, \textbf{dy}, \textbf{dz}) and number of grid points
[974]121               (\textbf{nx}, \textbf{ny}, \textbf{nz}). Since the first grid point along one of the directions has
122               index 0, the total number of grid points used are \textbf{nx}+1, \textbf{ny}+1, \textbf{nz}+1.
123               The total domain size in case of cyclic horizontal boundary conditions is
124               (\textbf{nx}+1)$\cdot$\textbf{dx}, (\textbf{ny}+1)$\cdot$\textbf{dy}.}
[1515]125         \end{itemize}
126      \item<3->{\textbf{Initial profiles}}
[973]127      \begin{itemize}
128         \scriptsize
129         \item{Constant with height. See parameter \textbf{initializing\_actions} for available
130               initialization methods. See \textbf{ug\_surface}, \textbf{vg\_surface} for initial values of
131               velocity.}
132      \end{itemize}
[1515]133      \item<4->{\textbf{Boundary conditions}}
[973]134      \begin{itemize}
135         \scriptsize
136         \item{For channel boundary condition, see \textbf{bc\_uv\_t}.}
137      \end{itemize}
[1515]138      \item<5->{\textbf{Forcing}}
[973]139      \begin{itemize}
140         \scriptsize
141         \item{For constant bulk velocity, see \textbf{conserve\_volume\_flow}.}
142         \item{For Coriolis force, see \textbf{omega}.}
143      \end{itemize}
[1515]144      \item<6->{\textbf{Topography}}
[973]145      \begin{itemize}
146         \scriptsize
147         \item{For generic topography, see \textbf{building\_height}, \textbf{building\_length\_x} and
148               \textbf{building\_length\_y}.}
149         \item{For raster topography, please use a text editor to manually create an
150               ASCII ''raster\_topo'' file that contains the same building.}
151      \end{itemize}     
[974]152    \end{itemize}
153 \end{frame}
[973]154
155% Folie 5
156\begin{frame}
157   \frametitle{Hints (II)}
158   \footnotesize
159   \begin{itemize}
[1515]160      \item<2->{\textbf{Simulation time}}
[973]161      \begin{itemize} 
162         \footnotesize       
163         \item{See parameter \textbf{end\_time}.}
164      \end{itemize}
[1515]165      \item<3->{\textbf{Variables}}
[973]166      \begin{itemize}
167         \footnotesize
168         \item{Output variables are chosen with parameters \textbf{data\_output} (3d-data or
169               2d-cross-sections) and \textbf{data\_output\_pr} (profiles).}
170         \item{Time series are activated using \textbf{dt\_dots}.}         
171      \end{itemize}
[1515]172      \item<4->{\textbf{Output intervals}}
[973]173      \begin{itemize}
174         \footnotesize
175         \item{Output intervals are set with parameter \textbf{dt\_data\_output}. This parameter
176               affects all output (cross-sections, profiles, etc.). Individual temporal
177               intervals for the different output quantities can be assigned using
178               parameters \textbf{dt\_do3d}, \textbf{dt\_do2d\_xy}, \textbf{dt\_do2d\_xz}, \textbf{dt\_do2d\_yz}, \textbf{dt\_dopr},
179               etc. }
180      \end{itemize}
[1515]181      \item<5->{\textbf{Time averaging}}
[973]182      \begin{itemize}
183         \footnotesize
184         \item{Time averaging is controlled with parameters \textbf{averaging\_interval},
185               \textbf{averaging\_interval\_pr}, \textbf{dt\_averaging\_input}, \textbf{dt\_averaging\_input\_pr}.}
186      \end{itemize}
187   \end{itemize}
188\end{frame}
189
190% Folie 6
191\begin{frame}
192   \frametitle{Further Hints}
193   \scriptsize
194   Please see under \\
195   \textbf{http://palm.muk.uni-hannover.de/wiki/doc/app/netcdf}  \\ 
196   \par\medskip 
197   where the complete PALM netCDF-data-output and the respective steering parameters are described.
198   \par\medskip
199   For topography, see \\
[1515]200   \textbf{http://palm.muk.uni-hannover.de/wiki/doc/app/inipar\#topo}\\
[973]201   \par\medskip
202   and especially for raster topography, see also
[1515]203   \textbf{http://palm.muk.uni-hannover.de/wiki/doc/app/iofiles\#TOPOGRAPHY\_DATA} \\
[973]204   \par\medskip
205   as well as the presentation ''Using topography (I)''.
206\end{frame}
207
208% Folie 7
209\begin{frame}
210   \frametitle{Proceeding}
211   Please proceed as follows:
212   \begin{itemize}
[1515]213      \item<2->[1.]{Please run with the ''generic'' topography case first.}
214      \item<3->[2.]{Check your results to answer all questions – except the final question.}
215      \item<4->[3.]{After this run has finished, use ncview, ncdump etc. to check the precise
[973]216               location of the building (look at 2D array zusi that is contained in 2D xy
217               cross-sections and 3D volume data).}
[1515]218      \item<5->[4.]{Use this information to manually create the ''raster\_topo'' file.}
219      \item<6->[5.]{Run the ''raster'' topography case.}
220      \item<7->[6.]{Compare both simulation results to answer the final question.}
[973]221   \end{itemize} 
222\end{frame}
223
224% Folie 8
225\begin{frame}
226   \frametitle{How to Start?}
227   \footnotesize
228   \begin{itemize}
[1515]229      \item<2->{Create two \textbf{INPUT} directories for both new runs: \\
[973]230            {\tt cd $\sim$/palm/current\_version} \\           
231            {\tt mkdir -p JOBS/generic/INPUT} \\
232            {\tt mkdir -p JOBS/raster/INPUT}} 
[1515]233      \item<3->{Create the parameter files and {\tt raster\_topo} file and set the required
[973]234            parameters in \\
235            {\tt JOBS/generic/INPUT/generic\_p3d} \\
236            {\tt JOBS/raster/INPUT/raster\_p3d}}
[1515]237      \item<4->{Start the runs one by one with mrun-commands \\
[973]238            {\tt mrun -d generic -K parallel ...} \\
239            {\tt mrun -d raster -K parallel ...}}
[1515]240      \item<5->{and analyze the output files in \\
[973]241            {\tt JOBS/generic/OUTPUT} \\
242            {\tt JOBS/raster/OUTPUT}}
243   \end{itemize}
244\end{frame}
245
246\section{Results}
247\subsection{Results}
248
249% Folie 9
250\begin{frame}
251   \frametitle{Flow convergence / divergence (I)}
252   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/cross_sections/u_xy.eps} \hspace{0.8cm}
253   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/cross_sections/v_xy.eps} 
254\end{frame}
255
256% Folie 10
257\begin{frame}
258   \frametitle{Flow convergence / divergence (II)}
259   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/cross_sections/w_xy.eps} \hspace{0.8cm}
260   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/cross_sections/w_xz.eps} 
261\end{frame}
262
263% Folie 11
264\begin{frame}
265   \frametitle{Streamlines}
266   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/streamlines/streamlines_xy.eps} \hspace{0.8cm}
267   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/streamlines/streamlines_xz.eps} \hspace{0.8cm}
268\end{frame}
269
270
271% Folie 12
272\begin{frame}
273   \frametitle{Vertical profiles of $\overline{w'u'}$, $\overline{w'v'}$}
274   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/profiles/wu_time_pr.eps} \hspace{0.8cm}
275   \includegraphics[width=0.45\textwidth]{exercise_topography_figures/profiles/wv_time_pr.eps}
276\end{frame}
277
278% Folie 13
279\begin{frame}
280   \frametitle{LES? - Fluxes}
281   \begin{center}
282      \includegraphics[width=0.6\textwidth]{exercise_topography_figures/profiles/wu_comp_pr.eps}
283   \end{center}   
284\end{frame}
285
286% Folie 14
287\begin{frame}
288   \frametitle{LES? - Time Series (I)}
289   \begin{center}
290      \includegraphics[width=0.95\textwidth]{exercise_topography_figures/timeseries/E_ts.eps} \\
291      \includegraphics[width=0.95\textwidth]{exercise_topography_figures/timeseries/umax_ts.eps} 
292   \end{center}
293\end{frame}
294
295% Folie 15
296\begin{frame}
297   \frametitle{LES? - Time Series (II)}
298   \begin{center}
299      \includegraphics[width=\textwidth]{exercise_topography_figures/timeseries/vmax_ts.eps} \\
300      \includegraphics[width=\textwidth]{exercise_topography_figures/timeseries/wmax_ts.eps}
301   \end{center}
302\end{frame}
303
304\end{document}
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