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SMAP Version 6.56 Update Note

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1. Input data formats have been changed for block coordinate and block data Refer to updated manual SMAP 3D GEN 3D User s Manual Pages 5 67 to 5 73 ADDRGN 2D SMAP S2 2D pre processing program includes the following new features Exceptional Material Numbers for Editing For IEDIT 2 and 3 in Card 3 3 those elements with material numbers of MC MB and MT will not be influenced by editing Material Number for MATold For MTYPE 4 and 4 in Card 3 3 5 4 1 program automatically assigns MATold MATNO 1 if MATNO is positive and program takes initial value for MATold if MATNO is negative Boundary Conditions for Base Mesh Left right top and bottom boundary conditions for base mesh in Card 4 1 can be specified as either free or roller Refer to updated manuals SMAP S2 gt ADDRGN 2D User s Manual Pages 6 4 and 6 14 SMAP 2D _ADDRGN 2D User s Manual Pages 6 4 and 6 14 For IEDIT 2 3 2 and 3 in ADDRGN 3D Card 3 3 those elements with material numbers of MC MB and MT will not be influenced by editing Refer to updated manual SMAP 3D ADDRGN 3D User s Manual Page 6 18 SMAP S2 2D 3D SMAP S2 2D 3D main processing program includes the following new features Exceptional Continuum Material Numbers for Embedding Truss Continuum material numbers MATP MATP and MATP in Card 7 3 are not allowed to embed truss element Element Activity Based on Material Property Number Element activity in Card Group
2. 14 lo 45 For64 colors 14 Io 77 For 128 colors 14 10 141 Saving New Views and Plotting Existing Views Now you can save the current views by clicking save button Existing views can be replotted by selecting Plot gt Existing View gt View No Existing Views Fire Elemert Meshes ale excavation Fire Element Meshes betore excavators Finse Element Meshes after excavation Sheet Pils Beam Element No Selected View view No 1 Finde Element Meshet before eecavation CE _ SMAP supports Additional Gravity Loads with intensity time history so that change of water table and pseudo dynamic earthquake loads can be modeled Refer to updated manuals and example problems SMAP S2 User s Manual Pages 4 45 4 45a Example VP15 SMAP 2D User s Manual Pages 4 84 4 84a Example VP23 SMAP 3D User s Manual Pages 4 70 4 70a Example VP23 SMAP Version 6 54 Update Note December 1 2006 GEN 3D SMAP 3D Pre processing Program If NEWNO 1 in Card 3 6 it assumes that new material property number 1 consists of joint elements whose joint face designation number KS 6 This feature is demonstrated in the GEN 3D Example 8 PLOT 3D SMAP Post processing Program PLOT 3D includes the following new features and bug corrections Specifying Element Number Range on Clip Plane Numbers for element and material can be plotted within a specified element number range on clip plane View gt General gt Element Number
3. 6 12 Update Note December 5 2003 Graphical User Interface GUD is available for creation or modification of ADDRGN 2D input data in building user defined curves and material zones IEDIT 4 Refer to notes for ADDRGN 2D Input GUI AIG and example problems ADD2D 7 DAT ADD2D 8 DAT and ADD2D 9 DAT In addition to easy mesh generation features AIG can be used to specify element activity data for main file and graphical data for post file Execution of ADDRGN 2D generates three output files GROUP MES Mesh file GROUP MAN Main file containing element activity GROUP POS Post file SMAP S2 2D 3D supports linearly distributed surface traction given as element nodal intensities or functions of global coordinates Refer to updated manuals and example problems in the directory C SMAP SMAP2D EXAMPLE SMAP NATM SMAP S2 Pages 4 27 and 4 27a Example S2 1 L DAT SMAP 2D Pages 4 65 and 4 65a Example 2D 1 L DAT SMAP 3D Pages 4 64 4 64a and 4 65a Example 3D 2E L DAT SMAP S2 2D 3D supports the change of tangent Young s modulus as a function of time Refer to updated manuals and example problems SMAP S2 Page 4 37 Example VP13 6 DAT Beam SMAP 2D Page 4 75 Example VP21 6 DAT Beam SMAP 3D Page 4 66 Example VP21 2 DAT Shell Example VP21 3 DAT Beam SMAP S2 2D 3D supports NEL NEL generation feature for the specification of element activity data in Card Group 8 For element numbers from NEL to NEL to have the
4. EXAMPLE PRESMAP INTERSEC Example Output mesh with intersections represented by truss PLOT 3D File View Model Plot Help elaitit 1218lolal lalalalala alele C SMAP SMAP3D EXAMPLE PRESMAP GEN 3D EX4 INPUT TEST 1 ZL OUT C SMAP SMAP3D EXAMPLE PRESMAP INTERSEC EXAMPLEZ PLOT 3D File View Model Plot Help N RR Nil SON UN NN BISTERRUN N N Ny Y AX Da RN REN lt AAN RR N N IN NANA CNN NN N AUX REN NOAH ANNAN A ANG WO N N Q N RAK RAY INNE NUN N EN N x SOR N AN N N I N AK SU Example 2 Output mesh with intersections represented by truss Example 2 Input mesh before computing intersections File View Model Plot Help Ks W AN NNG SUN N Bis N N N DIN KN KERN N RS ANS WANS aN Ke NA SSS A Se C SMAP SMAP3D EXAMPLE PRESMAP INTERSEC EXAMPLE2 GEN 3D SMAP 3D pre processing program can place the generated 3d structures in any specified direction as shown below PLOT 3D File View Model Plot Help l gt lt s l9lolel Ielsiajala l lalelo N 3 Mi l HN Mi f y y My Hy SSS SSSS SS a N m Jij Hi FiA fl I Pi C SMAP SMAP3D EXAMPLE PRESMAP GEN S
5. can change your default output file name as you want Example input file UAP1 3D txt which is prepared for the sample application program UserAP1 FOR is available in the directory C Smap Smap3d Example UserApp UserAP1 Input and Output File Name Input File Name UAP1 3D txt Browse Output File Name UAP1 3D 0UT Cancel Step 3 Go to Run gt Smap gt Text Editor to view your output file If your output contains SMAP mesh file plot it by PLOT 3D Following graphical output can be obtained from the original sample application program UserAP1 FOR PLOT 3D File View Model Plot Help el gt t 4 l lololo lalalalala ale z no Total Dimension X direction Min 0 Max 5 Y direction Min 0 Max 5 z direction Min 0 Max 5 UAP1 3D OUT Node Number SMAP Version 6 52 Update Note July 28 2006 PLOT 3D SMAP post processing program includes the following new features Specifying Element Range Meshes and results can be plotted within a specified element range View gt Mesh gt Element Range Specifying Element Node Number Range Numbers for node element boundary code and material can be plotted within a specified element node number range View gt General gt Element Number Range Node Number Range Updating Initial Values of Optional Parameters Following optional parameters are updated based on the last selection and these updated values are saved
6. in c Smap Ct Ctdata MeshView dat Mesh Type in Plot gt Mesh option Color for Element No Material No in View gt General option Material Color in View gt Mesh option Boundary Outline in View gt Mesh option Correcting Bugs Following problem is corrected Failure of showing visible surfaces when all 4 nodes of quad surface are not coplanar CIRCLE 2D is a new pre processing program generating finite element meshes for two dimensional circular section The Mesh file from CIRCLE 2D is compatible with SMAP 2D format SMAP S2 users need to convert this Mesh file by running conversion utility program in Run gt Femap gt Smap gt Other CIRCLE 2D can be accessed through Run gt Presmap gt Circle 2D CIRCLE 2D examples are included in directory EXAMPLE gt PRESMAP gt CIRCLE AIG ADDRGN 2D Input GUI supports the following new improvements Increasing Maximum Blocks in Base Mesh Maximum number of blocks for Base Mesh are 8 in both horizontal and vertical directions Specifying MATold for MTYPE 4 or 4 MATold additional material number sharing the same location with MATNO for MTYPE 4 or 4 can be specified Correcting Bugs Following problems are corrected Wrong splitting when original quad element includes 3 corners containing a line arc segment Failure of closed loop using arc segment in MTYPE 2 and 2 Failuer of passing through first element node for generating line elem
7. 8 can be specified based on material property numbers Refer to updated manuals SMAP S2 SMAP S2 User s Manual Pages 4 42 and 4 44 SMAP 2D SMAP 2D User s Manual Pages 4 81 and 4 83 SMAP 3D SMAP 3D User s Manual Pages 4 67 and 4 69 SMAP Version 6 50 Update Note November 5 2005 SMAP Version 6 50 Update Note November 5 2005 Now SMAP has its own 3D post processing program PLOT 3D Using PLOT 3D results of 2d 3d analyses can be graphically viewed without any additional input data for Post File The key features of PLOT 3D are Plot finite element meshes It reads the Mesh File described in Section 4 3 and plots meshes along with node element boundary code and material numbers Plot results of analyses automatically It reads the Mesh File and SMAP output files and then with no input for Post File plots contours of stress strain displacement iso surface principal stress vectors and deformed shapes Compute intersections of surfaces It reads the Mesh File containing shell elements for 3D surfaces and shows the locations of the computed intersections The computed coordinates of intersections are saved in a file Intersection dat which can be used for the construction of complicated 3D meshes Refer to updated manuals SMAP S2 User s Manual Section 3 3 4 Pages 3 39 to 3 53 User s Manual Section 3 4 3 Page 3 57 SMAP 2D User s Manual Section 3 3 4 Pages 3 39 to 3 53 User s Manual Se
8. D EXS Z1 OUT Refer to updated manual and example problem GEN 3D User s Manual Pages 5 67 and 5 68 Example problem in the directory C SMAP SMAP3D EXAMPLE PRESMAP GEN 3D EX5 CROSS 3D SMAP 3D pre processing program is improved in mesh refinement for MODELNO 2 so that it can generate reasonably well shaped meshes even if the height of the small tunnel is much smaller than that of the large tunnel Refer to example CR M2 1 in the directory C SMAP SMAP3D EXAMPLE PRESMAP CROSS 3D MODEL2 M2 1 Whole meshes erg el gt tls elololel lalalala alele 1 C SMAP SMAP3D EXAMPLE PRESMAP CROSS 3D MODEL2 M2 I CR M2 1 0UT File View Model Plot Help Meshes representing elaitis 1elolel llaa lalele h ele cores of small and large tunnels i C SMAP SMAP3D EXAMPLE PRESMAP CROSS 3D MODEL2 M2 1 CR M2 1 0UT ADDRGN 3D SMAP 3D pre processing program includes two additional features Changes material numbers so as to match those in continuum blocks IEDIT 3 Adds two layers of shell elements with joint elements in between IEDIT 5 Refer to updated ADDRGN 3D User s Manual Pages 6 18 and 6 23 and Example for IEDIT 5 in C SMAP SMAP3D EXAMPLE ADDRGN ADD 3D MOD 5 Whole Meshes Te lel gt ltls l lolplo alalama lalele E NEWZLOUT Shell and J
9. Range Plotting Beam Stresses and Strains for SMAP S2 SMAP2D Following beam stresses and strains can be plotted for SMAP S2 SMAP 2D Inner extreme fiber stress strain Outer extreme fiber stress strain Inner reinforcing bar stress Outer reinforcing bar stress Correcting Bugs Following problems are corrected Failure of showing material colors on and around clip plane when Visible Surface with Material Color in Plot gt Mesh gt Mesh Type is selected to plot meshes around clip plane Failure of showing visible surfaces when only Joint is selected in View gt Mesh gt Element Type SMAP S2 2D 3D includes program Shrink File to remove extra blank spaces before the carriage return This will reduce the size of the file where blank spaces are existing before the carriage return To run Shrink File follow the steps listed below Step 1 Go to Run gt Supplement gt Shrink File Plot Setup Exit Smap gt Presmap gt Addrgn gt Femap gt Plotmesh gt Edt Load gt XY User Application gt Cards Step 2 Browse or type your input file You can change your default output file name as you want Input and Output File Name Input File Name UAP1 3D txt Browse Output File Name UAP1 3D 0UT OK Cancel SMAP S2 2D ADDRGN 2D associated with AIG SMAP Pre processing Program ADDRGN 2D includes the following new features and bug corrections Recal
10. SMAP Version 6 56 Update Note December 1 2007 AIG ADDRGN 2D Input GUI AIG includes the following new feature Directly Executing AIG and Plotting Finite Element Meshes During the AIG input editing phase you can see the current finite element meshes by clicking Save button first and then clicking F E Mesh Plot button In the working directory following two files are also generated Group Mes and Group Man Group Identity GroupNo SegmentNo 0 Title Box Excavation Edit Segment Show Seg No m MTYPE and Material Parameter 3 Assign new material number within closed loop v MATNO 0 KF 1 00 MATold 3 MTYPE Ea MATNDj 0 KFi too THIEL oro LTP 0 LMAT 0 I Add new mesh J Hide i f2 LMATI 1 Line Options _Update Group 7 wore Coordinate Constraint Generated coordinates are not movable FE Mesh Plot Element Activity r PLTDS Plot Local Origin Replot NAC NDAC Mesh Local Origin XLO YLO 0 0 Principal Stress is relative to Reference Group Editor MATNO h Deformed Shape Point XREF YREF 1 0 0 Generated coordinates are movable I Beam Segment Editor XLO 0 00 I Truss Close I Contour Yo 0 00 I Reference Line Exit SMAP includes example problem VP24 for SMAP 2D and VP16 for SMAP S2 This example problem is very practical problem which can be encountered when the excavation is near to the existing structu
11. ation 4 0 should be in your computer Once you obtained UserAP1 DLL save UserAP1 DLL in the directory C Smap Smap3d Program SUBROUTINE UserAPl UI UO IFILEO UR IERROR Input UI Tape Unit No for Input File set as UI 5 UO Tape Unit No for Output File set as UO 6 IFILEO Output File Name including Proper Path UR Tape Unit No for Error Message Fil set ad UR 900 Output 152 O Execute UserAP1 and save on the file IFIL IERROR 0 Exit Without Error 1 Exit With Error IMSSATTRIBUTES DLLEXPORT UserAPl INTEGER UI UO UR IERROR CHARACTER 126 IFILEO Open Input Using User Defined Tape Unit Numbers OPEN UI FILE IFILEI TMP STATUS OLD Output Files Using User Defined Tape Unit Numbers OPEN UO FILE IFILEO STATUS UNKNOWN OPEN UR FILE ERROR TMP STATUS UNKNOWN Call UserAP1 3D This is Your Own Subroutine to be Executed CALL UserAP1 3D UI UO IFILEO UR IERROR To run your own application program follow the steps listed below Step 1 Go to Run gt User Application gt UAP1 exe to access your application UserAP1 DLL Plot Setup Exit Smap gt Presmap gt Addrgn gt Femap gt Plotmesh gt Supplement gt Load gt UAP2 exe UAP3 exe UAP4 exe UAP5 exe Step 2 Browse or type your input file You
12. ation and CYCLE DAT contains information relating Step No to Time SMAP S2 does not generate CYCLE DAT since Step No is the same as Time Refer to example problems SMAP S2 Example VP6 3 DAT SMAP 2D Example VP16 2 DAT SMAP 3D Example VP14 2 DAT SMAP S2 2D 3D supports Contour Plots of Yield Flag NCTS 25 for NPTYPE 6 in PLTDS Plots Plastic zones have the value of 1 and elastic zones have the value of 0 Refer to example problems SMAP S2 Example VP1 3 DAT SMAP 2D Example VP4 2 DAT SMAP 3D Example VP4 3 DAT TUNA Plus includes AIG for USLAYER DAT in Run menu AIG for USLAYER DAT generates the file USLAYER DAT using GUI USLAYER DAT contains the coordinates of User Specified Soil Rock Layers in Card Group 3 4 The original coordinates specified in Card 3 4 2 will be replaced by those coordinates in USLAYER DAT The procedure to use AIG for USLAYER DAT in TUNA Plus is the same as that illustrated in Steps 5 through 22 for Note 1 Refer to example problem EX10 DAT
13. ction 3 4 3 Page 3 57 SMAP 3D User s Manual Section 3 3 4 Pages 3 52 to 3 66 User s Manual Section 3 4 3 Page 3 70 PLOT XY Previously called PLTXY automatically generates preselected input data for Card Group 12 based on user s input in Card Group 10 Then users can modify these default input data using text editor as they want In order to use this special feature the Post File should contain no data Refer to example problems SMAP S2 Example VP8 2 and VP9 1 SMAP 2D Example VP1 and VP13 SMAP 3D Example VP1 and VP9 SMAP S2 includes the specification of element and node numbers to be used for time history plots by PLOT XY Refer to updated manual and example problems SMAP S2 User s Manual Page 4 47a Example VP8 2 and VP9 1 Now SMAP supports Embedded Truss Elements with explicit degrees of freedom for slip so that reinforcing bars can be placed anywhere within continuum elements Refer to updated manuals and example problems SMAP S2 User s Manual Pages 4 5 4 11 4 43 4 43a Example VP14 SMAP 2D User s Manual Pages 4 5 4 12 4 82 4 82a Example VP22 SMAP 3D User s Manual Pages 4 5 4 12 4 68 4 68a Example VP22 PLOT 3D computes and shows the locations of intersections of 3d surfaces as mentioned in Note 1 For this feature to be effective you need to select Yes for Compute Intersection in the PLOT 3D Setup Refer to Examplel and Example2 in the directory C SMAP SMAP3D
14. culating Segment End Coordinates by Arc Segment Data When a group in AIG consists of arc segments segment end coordinates are recalculated internally based on arc segment data Therefore when a line segment is connected to an arc segment the coordinate which is common to both segments is governed by end point of arc segment Correcting Bugs Following problems are corrected Failure of writing the beginning and ending angles of arc segment for the values that are less than or equal to 100 Card 3 3 5 4 3 1 in ADDRGN 2D Users Manual This error was due to the use of insufficient format in writing angles old format F7 3 corrected new format F7 2 AIG ADDRGN 2D Input GUI has the following changes and new improvements e Changing Menu Names Old Name New Name Start Group AIG End Group End Segment New menus are shown below AIG Line_Segment Arc_Segment End_Segment e New AIG Dialog Window Replacing Old Start Group Group Identity Group No Segment No Title Show Seg No m MTYPE and Material Parameter x MATNO K MATold manoi Ki m LTP LMAT I Add new mesh l Hide LTPi LMATi m Line Options LTPo Mato Update Group Coordinate Constraint Generated coordinates are movable Generated coordinates are not movable _ Save Element Activity PLTDS Plot Local Origin NAC NDAC T_ Mesh 7 Local Origin XLO YLO Repot MATold I Principal Stress is relativ
15. e to Reference MATNO 7 Deformed Shape Point XREF YREF Group Editor_ MATNO Beam LMAT I Truss LO Close LMATi f Contour YLO OoOo EA LMATo I Reference Line 1 2 3 4 5 6 7 Input data associated with FEMAP Plot is not supported as it is not shown in AIG window Line options are included Group outlines can be plotted with different line color line type and line thickness Hide Groups can be hidden by checking the check box New mesh can be overlaid over the existing group mesh by Add new mesh checking the check box Assigning MATNO O for MTYPE 3 can be used to specify element activity in the region without altering the material property data in the region where the group occupies Local origin can be specified fo move the coordinates of the current group Following command buttons are added on the right side of AIG window Create or modify the segment of a group Show Seg No Show group segment numbers Update Group Update current group parameters shown in AIG window Save Save all the update group parameters Replot Replot to show all the update group geometries Group Editor Delete move or copy groups Close Close AIG window Exit Finish and exit AIG program Generating Straight Line Element with End Points Only Straight Line Element with End Points Only can be generated by specifying NDIV 1 with IEND 0 for the line segme
16. ents in MTYPE 3 3 4 and 4 GEN 3D SMAP 3D pre processing program includes the following new features Modifying Element Indexes for Each Block A new Card Group 3 6 is added to modify element indexes and material numbers for the first layer of each block This feature is specially useful to build joint element at edges between side and bottom surfaces of pile structures Refer to GEN 3D User s Manual Pages 5 70 and 5 71 and the example problem in the directory C SMAP SMAP3D EXAMPLE PRESMAP GEN 3D EX8 The most recent versions of SMAP programs can be downloaded from www Webhard net using the following ID and pass words ID Info ComtecResearch com PW SMAP Japanese versions of SMAP User s Manuals can be downloaded from www Webhard net using the following ID and pass words ID Info ComtecResearch com PW SMAP Korean versions of SMAP User s Manuals can be downloaded from www Webhard co kr using the following ID and pass words ID COMTECROK PW SMAP SMAP Version 6 51 Update Note April 1 2006 GEN 3D SMAP 3D pre processing program includes the following new features Generating Straight Circular Line Block Each block can be specified as either straight or circular line block Specifying Different Material Numbers for Each Block Different material numbers can be specified for each block Some designated material numbers within a block can be removed New Input Data Format for Block Coordinate and Block Data
17. g Sample Source Programs and Batch Procedure File Sample source application programs are given along with batch procedure file to compile the source for the dynamic link library You can write your own application programs by modifying these sample programs and then compile them simply by running the given batch procedure file Using Subroutines Written for SMAP Mesh File Format Subroutines for SMAP mesh file format are provided in the sample source programs When the application program is to generate the SMAP mesh file simply call these subroutines to write in SMAP format To write your own application program follow the steps listed below Step 1 Install Microsoft Power Station 4 0 in the directory C MSDEV Step 2 Modify the sample application source program UserAP1 FOR in the directory C Smap Smap3d Program User UserAP 1 as you want Partial listing of the sample application is shown on the next page Step 3 Run the batch procedure file MakeAP1 BAT simply by typing or double clicking the file name Step 4 Copy the UserAP1 DLL to the directory C Smap Smap3d Program As Or ar CLO DR au SO U AA AAN Partial Listing of Sample Application Program UserAPl For UserAPl is for User Application Program 1 Users need to write their own program UserAP1 FOR by modifying the one in C Smap Smap3d Program User UserAP 1 and then compile it by running the Batch File MakeAP1 BAT Note that Fortran Power St
18. nt This feature is useful for modeling free part of earth rock anchor Supporting Drag and Drop in Plotting Text Texts can be added on the screen using drag and drop method in Draw gt Text menu In order to save such text data in AIG plotting following two files in the sub working directory Temp should be saved in some other folder MESHFILE MES and PLTDSO DAT To reproduce the text data in AIG plotting copy those two files in the new sub working directory Temp and then select plotting program PLOT_2D in Plot gt Plot Options menu SMAP Version 6 53 Update Note September 1 2006 SMAP S2 2D 3D allows users to run their own Fortran application programs up to maximum of 5 programs through SMAP menu procedure Main advantages of running application programs through SMAP menu are Easy Access of Input File Input file can be easily accessed through browser without writing file open window interface Automatic Naming of Output File Output file can be automatically named with the file extension of Out by default Displaying Error Messages User controlled error messages can be displayed on the screen simply by writing those messages on the file Plotting SMAP Mesh Output File When the execution of your application program is finished PLOT 3D is automatically opened whether or not your output contains SMAP mesh file If your output is written in the format of SMAP mesh file you can view that by PLOT 3D Usin
19. oint Elements BLOT ON generated by ADDRGN 3D elitls lololol lalalalala lalele heol n A NEWZILOUT 10 11 12 SMAP 2D 3D supports Ko condition for Engineering Model MODELNO 10 and Duncan amp Chang Hyperbolic Model MODELNO 12 Refer to updated manuals SMAP 2D User s Manual Page 4 34 SMAP 3D User s Manual Page 4 33 SMAP S2 TUNA can consider hydrostatic ground water pressures below water table Refer to updated manual and example problem SMAP S2 User s Manual Pages 4 21 and 4 22 TUNA User s Manual Page 4 3 Example EX1 1 DAT in C SMAP TUNA EXAMPLE EXI EX1 1 TUNA Plus supports Hoek and Brown Material Model for in situ rock mass Refer to updated manual and example problem TUNA Plus User s Manual Pages 4 6 and 4 9 Example EX1 1 DAT in the directory C SMAP TUNAPLUS EXAMPLE EXI EX1 1 SMAP automatically creates a sub directory Temp under current working directory All intermediate scratch files are saved in this sub directory Consequently to run SMAP programs manually you need to move to this Temp directory Refer to updated manual SMAP S2 User s Manual Pages 3 2 and 3 59 SMAP 2D User s Manual Pages 3 2 and 3 59 SMAP 3D User s Manual Pages 3 2 and 3 72 TUNA User s Manual Pages 3 2 and 3 15 TUNA plus User s Manual Pages 3 2 and 3 19 13 14 SMAP provides debug information during exec
20. res The finite element meshes for this example problem were generated by AIG SMAP Version 6 55 Update Note March 1 2007 AIG ADDRGN 2D Input GUI AIG includes the following new feature Segment Editor Segment Editor is a built in text editor which can be used to add delete or modify the segment data for the existing groups Segment Editor Enter Group No and Total Segments Group No 0 Total Segments 4 Group Tille Upper Core Enter Segment Data Xb Yb Xe Ye No Type NDIV IEND Xo Yo Rx Ay Qb Qe 1 0 3 248300E 01 500000E01 3 51100E 01 5 00000E 01 0 3 308700E 01 SO0000E01 4 24000E 00 4 24000E 00 O00 30 00 0 3 300000E 01 OODOODE 00 5 24000E 00 524000 00 30 00 150 00 0 3 291300E 01 500000E 01 4 24000E 00 4 24000E 00 150 00 180 00 je PLOT 3D SMAP Post processing Program PLOT 3D includes the following new features Specifying Material Colors Material colors for Continuum Beam Truss can be specified View gt Mesh gt Color Caio Maleti for Syasi Aerial Ninn 1 Fizl Sob Ebmert T ypo r 4 Fouilh Sale Color 5 Lad Gck Updals ConirwumsJort Shel wu co Black Medium G np Beam Element ei ca MB Medium Bue Tuz Element IT 2 Wie 9 Light Red mm Ci Be C 10 Light Yoa 2 Second Specty Material No BE Ca Green 11 Ligh Blue wu 5 Red FO 12 Ligh Pape P 6 Ysw 13 Lghl Grey Spacky Coor No gt fi Fori6 colors 14 io 29 For32 chor
21. same active and deactive steps prefix negative sign to NEL For example NEL NAC NDAC NEL NAC NDAC Refer to example problems SMAP S2 Example VP6 2 DAT SMAP 2D Example VP16 1 DAT SMAP 3D Example VP14 1 DAT PLTDS supports plotting deformed shapes based on element numbers In Card Group 11 4 5 prefix negative sign to NSR for element based deformed shape plot NSR JCR NJR ICR NIR where NSR Starting element number for row plot JCR Element number increment in a row NJR Number of elements in a row ICR Element number increment for next row NIR Total number of rows Example C SMAP SMAP2D EXAMPLE SMAP NATM 2D 2D 1 2D 1 DAT TUNA Plus supports straight line segments and removal of material regions In Card Group 3 4 3 and 3 4 4 the value of Young s modulus E determines these additional features For E 0 3 straight line segments connecting X1 Y1 through X4 Y4 will be built If X3 1 0E 30 only the first line segment will be built For E 1 Materials in this region will be removed If X4 1 0E 30 a triangle consisting of the first 3 apexes will be removed SMAP S2 2D 3D supports Automatic Removal of Deactive Elements for NPTYPE 2 and 6 in PLTDS Plots so that users can specify all continuum elements using NGROUP 0 Note that post processing program PLTDS identifies deactive elements based on ACDAC DAT and CYCLE DAT files in the working directory ACDAC DAT contains element activity inform
22. ution of main processing program solver This information is useful for tracing run time errors extracting convergence status and checking elapsed time Refer to updated manual SMAP S2 User s Manual Page 3 60 SMAP 2D User s Manual Page 3 60 SMAP 3D User s Manual Page 3 73 TUNA User s Manual Page 3 16 TUNA plus User s Manual Page 3 20 SMAP automatically renumbers nodes to reduce bandwidth The old input parameter NBAND is replaced by IQUAD If IQUAD 1 all linear elements are automatically transformed into quadratic elements This powerful new feature will be available for Version 6 6 Refer to updated manual SMAP S2 User s Manual Pages 4 15 and 4 15a SMAP 2D User s Manual Page 4 15 SMAP 3D User s Manual Page 4 15 SMAP Version 6 13 Update Note March 22 2004 SMAP Version 6 13 Update Note March 22 2004 SMAP S2 2D 3D supports IUNIT 4 in Card Group 11 of PLTDS plot When IUNIT 4 is specified post processing program PLTDS reads FORCE LENGTH and TIME units from the file UNIT DAT in the directory C SMAP CT CTDATA GROUP POS which can be obtained by executing ADDRGN 2D contains general draft forms of SMAP S2 2D post file input Users can modify this file appropriately and rename it Note that Card Group 11 of GROUP POS uses IUNIT 4 so that consistent unit is read from the file UNIT DAT for PLTDS plot SMAP Version 6 12 Update Note December 5 2003 SMAP Version

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