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480 lines
24 KiB
Plaintext
480 lines
24 KiB
Plaintext
// Copyright (C) 2007-2014 CEA/DEN, EDF R&D, OPEN CASCADE
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2.1 of the License, or (at your option) any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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// See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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//
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// File : AdvancedGEOM.idl
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// Author : Roman NIKOLAEV
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#ifndef __AdvancedGEOM_IDL__
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#define __AdvancedGEOM_IDL__
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#include "GEOM_Gen.idl"
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module GEOM
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{
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/*!
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* \brief Pattern for block division of the disk
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*/
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enum pattern {
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/*! Square */
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SQUARE,
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/*! Hexagon */
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HEXAGON
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};
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/*!
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* \brief Interface for advanced modeling functions.
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*/
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interface IAdvancedOperations : GEOM::GEOM_IOperations
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{
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// T-Shape WITHOUT Thickness reduction
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShape (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeWithPosition (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2,
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in GEOM::GEOM_Object theP3);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length). A chamfer is created
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* on the junction of the pipes.
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*
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theH Height of the chamfer.
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* \param theW Width of the chamfer.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeChamfer (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theH, in double theW, in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A chamfer is created on the junction of the pipes.
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theH Height of the chamfer.
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* \param theW Width of the chamfer.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeChamferWithPosition (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theH, in double theW, in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2,
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in GEOM::GEOM_Object theP3);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A fillet is created on the junction of the pipes.
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theRF Radius of curvature of fillet.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeFillet (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRF, in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A fillet is created on the junction of the pipes.
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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* \param theRF Radius of curvature of fillet.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeFilletWithPosition (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRF, in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2,
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in GEOM::GEOM_Object theP3);
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// T-Shape WITH Thickness reduction
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTR (in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTRWithPosition(in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2, in GEOM::GEOM_Object theP3);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length). A chamfer is created
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* on the junction of the pipes.
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*
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theH Height of the chamfer.
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* \param theW Width of the chamfer.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTRChamfer(in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in double theH, in double theW, in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A chamfer is created on the junction of the pipes.
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theH Height of the chamfer.
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* \param theW Width of the chamfer.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTRChamferWithPosition(in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in double theH, in double theW, in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2, in GEOM::GEOM_Object theP3);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A fillet is created on the junction of the pipes.
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* Center of the shape is (0,0,0). The main plane of the T-shape is XOY.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theRF Radius of curvature of fillet.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTRFillet(in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in double theRF, in boolean theHexMesh);
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/*!
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* \brief Create a T-shape object with specified caracteristics for the main and
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* the incident pipes (radius, width, half-length).
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*
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* A fillet is created on the junction of the pipes.
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* The extremities of the main pipe are located on junctions points P1 and P2.
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* The extremity of the incident pipe is located on junction point P3.
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* \param theR1 Internal radius of main pipe
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* \param theW1 Width of main pipe
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* \param theL1 Half-length of main pipe
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* \param theR2 Internal radius of incident pipe (R2 < R1)
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* \param theW2 Width of incident pipe (R2+W2 < R1+W1)
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* \param theL2 Half-length of incident pipe
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*
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* \param theRL Internal radius of left thickness reduction
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* \param theWL Width of left thickness reduction
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* \param theLtransL Length of left transition part
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* \param theLthinL Length of left thin part
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*
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* \param theRR Internal radius of right thickness reduction
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* \param theWR Width of right thickness reduction
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* \param theLtransR Length of right transition part
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* \param theLthinR Length of right thin part
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*
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* \param theRI Internal radius of incident thickness reduction
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* \param theWI Width of incident thickness reduction
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* \param theLtransI Length of incident transition part
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* \param theLthinI Length of incident thin part
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*
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* \param theRF Radius of curvature of fillet.
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* \param theHexMesh Boolean indicating if shape is prepared for hex mesh (default=true)
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* \param theP1 1st junction point of main pipe
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* \param theP2 2nd junction point of main pipe
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* \param theP3 Junction point of incident pipe
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* \return List of GEOM_Object, containing the created shape and propagation groups.
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*/
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GEOM::ListOfGO MakePipeTShapeTRFilletWithPosition(in double theR1, in double theW1, in double theL1,
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in double theR2, in double theW2, in double theL2,
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in double theRL, in double theWL, in double theLtransL, in double theLthinL,
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in double theRR, in double theWR, in double theLtransR, in double theLthinR,
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in double theRI, in double theWI, in double theLtransI, in double theLthinI,
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in double theRF, in boolean theHexMesh,
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in GEOM::GEOM_Object theP1, in GEOM::GEOM_Object theP2,
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in GEOM::GEOM_Object theP3);
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/*!
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* This function allows to create a disk already divided into blocks. It
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* can be use to create divided pipes for later meshing in hexaedra.
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* \param theR Radius of the disk
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* \param theRatio Relative size of the central square diagonal against the disk diameter
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* \param theOrientation Plane on which the disk will be built
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* \param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
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* \return New GEOM_Object, containing the created shape.
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*/
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GEOM::GEOM_Object MakeDividedDisk (in double theR,
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in double theRatio,
|
|
in short theOrientation,
|
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in GEOM::pattern thePattern);
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|
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/*!
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* \brief Create a Disk prepared for hexa meshing with given center, normal vector and radius.
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* \param thePnt disk center.
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* \param theVec Vector, normal to the plane of the disk.
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|
* \param theR Disk radius.
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|
* \param theRatio Relative size of the central square diagonal against the disk diameter
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|
* \param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
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|
* \return New GEOM_Object, containing the created disk.
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|
*/
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GEOM::GEOM_Object MakeDividedDiskPntVecR ( in GEOM::GEOM_Object thePnt,
|
|
in GEOM::GEOM_Object theVec,
|
|
in double theR,
|
|
in double theRatio,
|
|
in GEOM::pattern thePattern);
|
|
|
|
/*!
|
|
* Builds a cylinder prepared for hexa meshes
|
|
* \param theR Radius of the cylinder
|
|
* \param theH Height of the cylinder
|
|
* \param thePattern Division pattern. It can be GEOM.SQUARE or GEOM.HEXAGON
|
|
* \return New GEOM_Object, containing the created shape.
|
|
*/
|
|
GEOM::GEOM_Object MakeDividedCylinder (in double theR,
|
|
in double theH,
|
|
in GEOM::pattern thePattern );
|
|
/*!
|
|
*
|
|
* Create a smoothing surface from a set of points
|
|
* \param thelPoints list of points. Compounds of ggpoints are accepted as well.
|
|
* \param theNbMax maximum number of Bezier pieces in the resulting surface.
|
|
* \param theDegMax maximum degree of the resulting BSpline surface
|
|
* \param theDMax specifies maximum value of the GeomPlate_PlateG0Criterion criterion.
|
|
* \return New GEOM_Object, containing the created shape.
|
|
*/
|
|
GEOM::GEOM_Object MakeSmoothingSurface (in GEOM::ListOfGO thelPoints,
|
|
in long theNbMax,
|
|
in long theDegMax,
|
|
in double theDMax);
|
|
|
|
/*@@ insert new functions before this line @@ do not remove this line @@*/
|
|
};
|
|
};
|
|
|
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#endif // __AdvancedGEOM_IDL__
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