MOAB: Mesh Oriented datABase  (version 5.4.1)
QuadLagrangeShape.hpp
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00001 /* *****************************************************************
00002     MESQUITE -- The Mesh Quality Improvement Toolkit
00003 
00004     Copyright 2006 Lawrence Livermore National Laboratory.  Under
00005     the terms of Contract B545069 with the University of Wisconsin --
00006     Madison, Lawrence Livermore National Laboratory retains certain
00007     rights in this software.
00008 
00009     This library is free software; you can redistribute it and/or
00010     modify it under the terms of the GNU Lesser General Public
00011     License as published by the Free Software Foundation; either
00012     version 2.1 of the License, or (at your option) any later version.
00013 
00014     This library is distributed in the hope that it will be useful,
00015     but WITHOUT ANY WARRANTY; without even the implied warranty of
00016     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
00017     Lesser General Public License for more details.
00018 
00019     You should have received a copy of the GNU Lesser General Public License
00020     (lgpl.txt) along with this library; if not, write to the Free Software
00021     Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
00022 
00023     (2006) [email protected]
00024 
00025   ***************************************************************** */
00026 
00027 #ifndef MSQ_QUAD_LAGRANGE_SHAPE_HPP
00028 #define MSQ_QUAD_LAGRANGE_SHAPE_HPP
00029 
00030 /** \file QuadLagrangeShape.hpp
00031  *  \brief Lagrange mapping funtion for a 9-node quad.
00032  *  \author Jason Kraftcheck
00033  */
00034 
00035 #include "MappingFunction.hpp"
00036 
00037 namespace MBMesquite
00038 {
00039 
00040 /**\brief Lagrange shape function for 9-node quadrilateral elements
00041  *
00042  * This class implements the MappingFunction interface, providing
00043  * a Lagrange shape function for quadrilateral elements.
00044  *
00045  * \f$\vec{x}(\xi,\eta) = \sum_{i=0}^{n-1} N_i(\xi,\eta) \vec{x_i}\f$
00046  *
00047  * \f$N_a = l^2_b(\xi) l^2_c(\eta)\f$
00048  *
00049  * \f$l^2_1(\xi) = (\xi - 1) (2 \xi - 1)\f$
00050  *
00051  * \f$l^2_2(\xi) = 4 \xi (1 - \xi)\f$
00052  *
00053  * \f$l^2_3(\xi) = \xi (2 \xi - 1)\f$
00054  *
00055  * \f$\begin{array}{ccc}
00056  *    a & b & c \\ \hline
00057  *    0 & 1 & 1 \\
00058  *    1 & 3 & 1 \\
00059  *    2 & 3 & 3 \\
00060  *    3 & 1 & 3 \\
00061  *    4 & 2 & 1 \\
00062  *    5 & 3 & 2 \\
00063  *    6 & 2 & 3 \\
00064  *    7 & 1 & 2 \\
00065  *    8 & 2 & 2 \end{array}\f$
00066  *
00067  */
00068 class MESQUITE_EXPORT QuadLagrangeShape : public MappingFunction2D
00069 {
00070   public:
00071     virtual EntityTopology element_topology() const;
00072 
00073     virtual int num_nodes() const;
00074 
00075     virtual void coefficients( Sample location,
00076                                NodeSet nodeset,
00077                                double* coeff_out,
00078                                size_t* indices_out,
00079                                size_t& num_coeff_out,
00080                                MsqError& err ) const;
00081 
00082     virtual void derivatives( Sample location,
00083                               NodeSet nodeset,
00084                               size_t* vertex_indices_out,
00085                               MsqVector< 2 >* d_coeff_d_xi_out,
00086                               size_t& num_vtx,
00087                               MsqError& err ) const;
00088 
00089     virtual void ideal( Sample location, MsqMatrix< 3, 2 >& jacobian_out, MsqError& err ) const;
00090 };
00091 
00092 }  // namespace MBMesquite
00093 
00094 #endif
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