Presentations/Seminars/IBA@COMPASS.cz/Develop/XIII/present.tex

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\def\WGET{http://golem.fjfi.cvut.cz/wiki/wikidata}
\def\GWinputText#1{\immediate\write18{mkdir -p wikidata/`dirname #1`; wget  --user=golem --password='rabijosille' \WGET/#1 -O wikidata/#1}\input{wikidata/#1}}
\def\GWincludegraphics#1#2{
\IfFileExists{wikidata/#2}
{\immediate\write18{echo "";echo "*************** #2 exists, no wget *******************"}}
{\immediate\write18{mkdir -p wikidata/`dirname #2`;wget --user=golem --password='rabijosille' \WGET/#2 -O wikidata/#2;}}
\includegraphics[#1]{wikidata/#2}
}

\def\nic#1{#1}
\def\GWweb{http://golem.fjfi.cvut.cz/wiki/wikidata}
\def\GWpath{/GW}
%\def\GWinput#1{\immediate\write18{mkdir -p GW/`dirname #1`; wget  \GWweb/#1 -O GW/#1}\input{GW/#1}}
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\begin{document}
\title{Golem tokamak for education and training \\ $\approx$ 5 years at the CTU, $\approx$ 4 years at service}
\author{{\bf \underline{ Vojt\v{e}ch Svoboda}, et al.} for IBA 2013}
%\\   
%\includegraphics[width=0.5\textwidth]{figs/photos/Overview/cimg8714.jpg}}
\date{\today}
\slide{title}{Title}{\titlepage}


\section{Introduction}
\GWinput{Archive/Gallery/defs.tex}
\GolemTransportIPPEN
\GolemTransportCTUEN

\begin{frame} \frametitle{The smallest \& oldest operational tokamak with the biggest control room in the world}
\GWincludegraphics{width=\textwidth}{Tokamak/ExperimentalSetup/RemoteSetup/Portrait/OveralSetup.pdf}
\end{frame}


\slide{}{Basic statistics up to 30.11.2012}{
\begin{description}
\item[Days from instalation:]  1815.
 \item[Operational days:] $\approx$ 438.
 \item[Operational hours:] $\approx$ 1954. 
 \item[Actual shot No:] \#10417.
 \item[Shots with plasma:] $\approx$ 7600.
 \item[Average plasma length:] $\approx$ 7 ms.
\end{description}
}

\slide{}{Inventory cont.}{
\begin{description}
 \item[\bf Overal plasma length:] \bf $<$ 60 s.
 \item 
 \item[Bachelor thesis:] 3 completed and 2 under construction.
 \item[Diploma thesis:] 1 completed and 1 under construction.
 \item[Training courses:] SUMTRAIC day 5x, GOMTRAIC 2x, SCIWTRAIC 3x, FUMTRAIC 2x, HUNTRAIC 2x.
 \item[Conferences:] EPS PPCF 4x, SOFT 2x, HTPD 1x. 
 \item[Excursions:] More then 70 excursions.
 \item[Impact articles:] 3x FUSENGDES, 1x RSI.
 \item[Remote shots from abroad:] $\approx$ 700
\end{description}
}

\section{Inventory 2012/2013}
\begin{frame} \frametitle{Forecast IBA, October 2012}
\begin{itemize}
\item 10/12 Remote practica from Budapest II. .. OK
\item 10/12 Remote demonstration from Trieste IAEA workshop. .. OK
\item Bachelor and Diploma Thesis - cont. ... OK
\item Excursions - cont. .. OK
\item University of third age - cont. ... Finished
\item The week of science - cont.  ... OK
\item GOMTRAIC II - spring 2013.  ... OK
\item SUMTRAIC 2013- cont.  ... OK
\item FUMTRAIC II - Feb. 2013. ... OK
\item Remote practica. 
\item HTS (temporary slowed down), RF preionization .. OK, magnetic phenomena .. OK, probes measurements .. OK.
\end{itemize}
\end{frame}

\begin{frame} \frametitle{GOMTRAIC 2013 - flagship of the project}
\begin{minipage}[]{0.5\textwidth}
\GWincludegraphics{width=\textwidth}{TrainingCourses/GOMTRAIC/13/report/photos/CIMG0393.JPG}
\end{minipage} 
\begin{minipage}[]{0.48\textwidth}
\begin{itemize}
\item In-situ (PERFECT) and remote (NOT SO GOOD) part.
\item 7 foreign students.
\item 5 Czech students (remote and in-situ) and 1 Hungarian student {\bf as tasks supervisors}.
\item MHD, Tomography, HXR, Rake probe.
\item Remote shots from Costa Rica, Mexico and India.
\end{itemize}
\end{minipage} 
\end{frame}



\begin{frame} \frametitle{Technological achievements}
 \begin{block}{Reconstruction: from kludge to normal operation design}
HW, control and web presentation SW (python), database oriented analysis (SQL), WIKI (gitit).
 \end{block}
\begin{itemize}
 \item Vertical stabilization.
 \item Plasma breakdown with 2.45 GHz MW launcher.
 \item Bottom and top preionization gunn instalation (breakdown studies).
\end{itemize}
 \end{frame}


\begin{frame} \frametitle{Vertical plasma stabilization}
  4 Mirnov coils at poloidal angles.
  Computer with real-time OS for calculating the plasma position with a frequency of 50 kHz.
  Voltage source driven by the computer controls a current in a poloidal coils.
  The prolongation of the plasma life was over 2~ms. 
  \resizebox{0.9\textwidth}{!}{\includegraphics[]{images1/12413_photo.png}}
  \resizebox{0.9\textwidth}{!}{\includegraphics[]{images1/12421_photo.png}}
  \resizebox{0.9\textwidth}{!}{\includegraphics[]{images1/comp.pdf}}
 \end{frame}

\begin{frame} \frametitle{Breakdown otimization with the 2.45 GHz MW launcher}
\GWincludegraphics{width=\textwidth}{Experiments/BreakDownStudies/sessions/040413MWpreionGeVoHoSt/figures/Ucdscan/graph.jpg}
\end{frame}

 
\begin{frame} \frametitle{Focused topics: MHD studies}
  Array of 16 Mirnov coils has been instaled.
  Magnetic islands detected at low $q$ regime of tokamak
  $m = 3$ magnetic island -- shown by cross-correlation analysis of $14 - 15$ ms interval
  \begin{minipage}{0.48\textwidth}
  \includegraphics[width=\textwidth]{images1/markovic_1.pdf}\end{minipage}
  \begin{minipage}{0.48\textwidth}
  \includegraphics[width=\textwidth]{images1/markovic_2.pdf}\end{minipage}
  \textit{Spectrogram of B$_\theta$ perturbations detected by a Mirnov
coil located on $\theta=\pi/2$}, \textit{Cross-correlation coefficients of B$_\theta$ perturbation signal on an array of 16 Mirnov coils. Reference coil chosen on $\theta=\pi/2$}
\end{frame}



\section{Forecast 2013/2014}
\begin{frame} \frametitle{Forecast 2013/2014}
\begin{itemize}
\item Prague Museum Night (tomorrow).
\item 5 high school students in the GOLEM team.
\item FUMTRAIC III, GOMTRAIC III, SCIWTRAIC IV, HUNTRAIC III, SUMTRAIC day at GOLEM VI.
\item IAEA joint experiment.
\item Bacheelor thesis IV, V.
\item Diploma thesis II.
\end{itemize}
\end{frame}


\begin{frame} \frametitle{Technological plans and chalenges}
\begin{itemize}
\item HW, SW, Wiki reconstruction cont. 
 \item Both $E_{CD}$ orientation.
 \item Both $B_{t}$ orientation.
 \item Breakdown optimization cont.
 \item Plasma time length prolongation from 20 to 30 ms
 \item Horizontal stabilization.
 \item Firing rate $\approx$ 1 RPM.
\end{itemize}

\end{frame}

\begin{frame} \frametitle{Plans: Poloidal asymmmetries in particle flux in the SOL (R.Pitts at.al. Journal of Nuclear Materials, 1990.)}
\begin{minipage}[]{0.43\textwidth}
\GWincludegraphics{width=\textwidth}{Experiments/PoloidalSOLasymetries/private/library/Pitts1990/Fig5.jpg}
\end{minipage} 
\begin{minipage}[]{0.55\textwidth}
\GWincludegraphics{width=\textwidth, angle=-90}{Experiments/PoloidalSOLasymetries/gallery/Front.JPG}
\end{minipage} 
\end{frame}



\begin{frame} \frametitle{Acknowledgement}
 \begin{block}{Acknowledgement}
The financial support by FUSENET, MSM 6840770039, MSM 6840770014 and A1581, SGS SGS11/131/OHK4/2T/14 is acknowledged.
  \end{block}
 \begin{block}{Special thanks to the GOLEM team (students, teachers, technicians)}
\begin{center}
 Edita Bromova, Zdenek Cespiro, Ivan Duran, Vladimir Fuchs, {\bf Ondrej Grover}, Pavel Hacek, Billy Huang, Igor Jex, 
 Michal Kazda, Jindrich Kocman, Martin Kubic, Ondrej Kudlacek, Petr Liska, {\bf Tomas Markovic}, Jan Mlynar, 
 {\bf Michal Odstrcil}, Tomas Odstrcil, Ondrej Pluhar, Gergo Pokol, Ondrej Sebek, Michal Smid, {\bf Gabriel Vondrasek}, 
 Frantisek Zacek, and Jiri Zara. 
\end{center}
  \end{block}
\end{frame}

\CisaruvPekarGolem

\end{document}
}