SQLITE_NOTICE(283): recovered 15 frames from WAL file /data/mtt.fossil-wal
File mttroot/mtt/lib/comp/compound/Thermal/CompressibleFlow/ICV/ICV_desc.tex artifact b0103a1ae6 part of check-in 13cbd04fa9
% -*-latex-*- Put EMACS into LaTeX-mode % Verbal description for system ICV (ICV_desc.tex) % Generated by MTT on Tue Mar 31 15:58:34 BST 1998. % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% Version control history % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% $Id$ % %% $Log$ % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% The acausal bond graph of system \textbf{ICV} is displayed in Figure \Ref{ICV_abg} and its label file is listed in Section \Ref{sec:ICV_lbl}. The subsystems are listed in Section \Ref{sec:ICV_sub}. This thermal tank model has been developed to represent an inter-volume component (ICV) for a gas turbine. The major simplification is that the mass contained in the ICV is assumed constant -- this is consistent with using an ideal compressor and an ideal turbine with identical mass flows. Energy conservation is ensured by using true bonds and \textbf{TF} components. %%% Local Variables: %%% mode: latex %%% TeX-master: t %%% End: