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<!DOCTYPE HTML PUBLIC "-//IETF//DTD HTML 3.2 Final//FR"><!-- Converted with LaTeX2HTML 95.1 (Fri Jan 20 1995) --><!-- by Nikos Drakos (nikos@cbl.leeds.ac.uk), CBLU, University of Leeds --><!-- Modified Simulog 03/97 --><HTML><HEAD><TITLE>B.5 Alphabetic list of processors</TITLE><LINK REL=STYLESHEET TYPE="text/css" HREF="./Modulef.css" TITLE="Modulef CSS"><meta name="description" value="B.5 Alphabetic list of processors"><meta name="keywords" value="Guide1"><meta name="resource-type" value="document"><meta name="distribution" value="global"></HEAD><BODY BGCOLOR="#FFFFFF"><P> <IMG SRC="../icons/smallmod.gif" WIDTH=211 HEIGHT=50 ALIGN=BOTTOM ALT="Modulef"><A NAME=tex2html844 HREF="node54.html"><IMG BORDER=0 ALIGN=BOTTOM SRC="../icons/previous_motif.gif" ALT="previous"></A><A NAME=tex2html850 HREF="node50.html"><IMG BORDER=0 ALIGN=BOTTOM SRC="../icons/up_motif.gif" ALT="up"></A><A NAME=tex2html852 HREF="node56.html"><IMG BORDER=0 ALIGN=BOTTOM SRC="../icons/next_motif.gif" ALT="next"></A><A NAME=tex2html854 HREF="node2.html"><IMG BORDER=0 ALIGN=BOTTOM SRC="../icons/contents_motif.gif" ALT="contents"></A><A HREF="../Guide1-18/node55.html"><IMG BORDER=0 SRC="../icons/zoom18.gif" ALIGN=BOTTOM ALT="[BIG]"></A><A HREF="../Guide1-14/node55.html"><IMG BORDER=0 SRC="../icons/zoom14.gif" ALIGN=BOTTOM ALT="[Normal]"></A><A HREF="../Guide1-10/node55.html"><IMG BORDER=0 SRC="../icons/zoom10.gif" ALIGN=BOTTOM ALT="[small]"></A><BR><B> Next: </B> <A NAME=tex2html853 HREF="node56.html">B.6 The general preprocessor TOUTXX</A><B>Up: </B> <A NAME=tex2html851 HREF="node50.html">B List of preprocessors</A><B> Prev: </B> <A NAME=tex2html845 HREF="node54.html">B.4 List of processors (by theme)</A><B><A HREF="node2.html" >Contents</A></B><HR SIZE=3 WIDTH="75%"><H1><A NAME=SECTION06250000000000000000>B.5 Alphabetic list of processors</A></H1><P><P><P>The list below displays all the processors in the MODULEF library. For each processor, we indicate:<P><UL><LI> the name;<LI> the type of problem to be treated;<LI> the module(s) it calls (between brackets);<LI> the data structure(s) it manipulates (between brackets);<LI> a short description of its function.</UL><P><P><P>List :<P><OL><LI> <b> AAPB</b> : Multics - Print the arrays present in the super-array <b> M</b>.<LI> <b> ADPNXX</b> : Mesh - ( ADPNOP ) [ NOPO ] Add non-vertex nodes.<LI> <b> AFFNXX</b> : Mesh - ( AFFNOP ) [ NOPO ] Local refinement in 2 dimensions.<LI> <b> AIDEXX</b> : Aid - Name of the processors and corresponding brochures.<LI> <b> AIGUXX</b> : Mesh - ( AIGUNO ) [ NOPO ] Make a 2D triangular mesh non-obtuse.<LI> <b> APN3XX</b> : Mesh - ( APNOP3 ) [ NOPO ] General preprocessor for the creation of 3D meshes for simple cases, and for their manipulation.<LI> <b> APNOXX</b> : Mesh - ( APNOPO ) [ NOPO ] General preprocessor for the creation of 2D meshesand their manipulation.<LI> <b> ASSAXX</b> : Assembly - ( ASSATR ) [ ATRI B ] Assembly in form <b> ATRI</b>.<LI> <b> ASSGXX</b> : Assembly - ( ASMAGC ) [ AMAT B ] Assembly in form <b> AMAT</b>.<LI> <b> ASSMXX</b> : Assembly - ( ASMAPC ) [ MUA B ] Assembly in form <b> MUA</b>.<LI> <b> BDISXX</b> : Utility - ( BDISEQ ) [ B ] Change a D.S. <b> B</b> in direct access intoa D.S. <b> B</b> in sequential access or vice versa.<LI> <b> BSPLXX</b> : Utility - ( BSPLIN ) [ NOPO COOR ] Approximation of functions by B-splines. <LI> <b> CACOXX</b> : Composites - Calculate the mechanical characteristics of an equivalent homogenizedmaterial.<LI> <b> CHARXX</b> : Mesh - ( CHARPO CHARPL ) [ NOPO ] Define a link between 2 beams or 2 plates.<LI> <b> CHOLXX</b> : Solution - ( PREPAC ... DRCHPC ) [ TAE MAIL BDCL B ] Cholesky method:from assembly to solution.<LI> <b> CHORXX</b> : Solution - ( CLIMPC ... DRCHPC ) [ MUA BDCL B ] Cholesky method:from boundary conditions to solution.<LI> <b> CHOSXX</b> : Solution - ( PREPAC ... DRCHPS ) [ TAE MAIL BDCL B ] Cholesky method:from assembly to solution with direct access.<LI> <b> COBDXX</b> : Utility - ( COBDC1 ) [ BDCL ] Description of imposed boundary conditions.<LI> <b> COBVXX</b> : Utility - ( COBVVP ) [ VVPR B ] Store one or several eigen vectors in a D.S. <b> B</b>. <LI> <b> CODEXX</b> : Utility - ( CODEVA ) [ VVPR ] Create a file to plot the eigen values (via <b> TRACXX</b>).<LI> <b> COLIXX</b> : Mesh - ( COLIBR) [ NOPO ] Construct a 3D mesh from blocks.<LI> <b> COMAXX</b> : Interpolation - ( COMACO ) [ MAIL COOR ] Define interpolation.<LI> <b> COMPXX</b> : Mesh - ( COMPRE ) [ NOPO ] Compression of a D.S. <b> NOPO</b> so that nodes andpoints coincide.<LI> <b> CORNXX</b> : Utility - ( CORNOE ) [ MAIL COOR ] Create the D.S. <b> COOR</b> of nodes.<LI> <b> COSDXX</b> : Utility - ( COSDB COSNOB COSMCB ) [ NOPO MAIL COOR B ] Create a D.S. <b> B</b>using vectors or coordinates contained in a D.S. <b> NOPO</b>, a D.S. <b> COOR</b> and thecorresponding D.S. <b> MAIL</b>. <LI> <b> COTAXX</b> : Utility - ( COTABM ) [ NOPO MAIL COOR TABM ] Construction of D.S. <b> TABM</b> -Navier-Stokes fluid problems.<LI> <b> COUPXX</b> : Plot - ( TRISO3 ) [ NOPO B ] Isovalues on a slice through a 3D problem.<LI> <b> CROUXX</b> : Solution - ( PREPAC ... DRCRPC ) [ TAE MAIL BDCL B ] Crout method:from assembly to solution.<LI> <b> CSNTXX</b> : Utility - ( CSNTAE ) [ TAE ] Change a symmetric D.S. <b> TAE</b> intoa non-symmetric D.S. <b> TAE</b>.<LI> <b> CTYTXX</b> : Utility - ( CTYTAE ) [ TAE ] Change a single precision D.S. <b> TAE</b> intoa double precision D.S. <b> TAE</b> or vice versa.<LI> <b> DEFIXX</b> : Utility - Generate the FORTRAN subroutine to define an element.<LI> <b> DEFNXX</b> : Mesh - ( DEFNOP ) [ NOPO B ] Create a D.S. <b> NOPO</b> by adding displacements.from assembly to solution.<LI> <b> DGRAXX</b> : Solution - ( PREPGC ... CONDLU DGRADA ) [ TAE AMAT MAIL BDCL B ] Accelerated double conjugate gradient iterations for non symmetric matrix (positive definite).<LI> <b> DTRIXX</b> : Mesh - ( DTRI3D ) [ NOPO ] Split the elements of a 3D mesh into tetrahedra. <LI> <b> ELAPXX</b> : Plasticity - ( ELAPLA ) Calculate the plastic zones. <LI> <b> ELIMXX</b> : Mesh - ( ELIMNO ) [ NOPO ] Remove one or several elements from a D.S. <b> NOPO</b>.<LI> <b> ELNLXX</b> : Non-linear elasticity - ( PRELA3 GDEFIN ) [ NOPO MAIL COOR BDCL B ] Solvean elasticity problem with large deformations.<LI> <b> EMC
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