PROGRAM SET27STAX3D C======================================================================= C THREE DIMENSIONAL DATA GENERATING PROGRAM FOR STATICX.FOR C PROJECT NAME: BEAM000 C BOUNDARY CONDITIONS C LEFT END: FIXED (EMULATION OF SYMENTRIC BEAM CEMTER) C RIGHT END: MOMENT IS APPLIED C ALL OTHERS: NO NORMAL FOECE, NO SHEAR FORCE C DOMAIN: RECTANGULAR C ELEMENT: 27-NODED ISOPARAMETRIC HEXA 3D PARABOLIC ELEMENT C DOMAIN DISCRETIZATION: ONE-SIZE ELEMENTS C EIJI FUKUMORI JUNE 18, 2012 C======================================================================= IMPLICIT REAL*8 ( A-H , O-Z ) PARAMETER ( ND=27, INTEPT=3, MXE=22000, MXN=40000, MXB=2000 ) PARAMETER (YOUNG=69.D6,POISSON=0.3D0, * TLX = 20.D0 , TLY = 1.D0 , TLZ = 2.D0 , * NEX = 20 , NEY = 2 , NEZ = 4 ) C======================================================================= DIMENSION NODEX(MXE,ND), * XCOORD(MXN), YCOORD(MXN) ,ZCOORD(MXN), * IBNDFX(MXB), IBNDFY(MXB) ,IBNDFZ(MXB), * BVX(MXB) , BVY(MXB) ,BVZ(MXB) , * IBFORCEX(MXB), IBFORCEY(MXB), IBFORCEZ(MXB), * BVFORCEX(MXB), BVFORCEY(MXB), BVFORCEZ(MXB) DIMENSION NEUTRAL(MXN) CHARACTER INPFILE*13,EXFILE*3 LOGICAL YES C======================================================================= DATA INPFILE / 'STATC3D27.DAT' / C======================================================================= F(X) = X G(X) = X C======================================================================= DX=TLX/(2*NEX) DY=TLY/(2*NEY) DZ=TLZ/(2*NEZ) NDX = 2*NEX+1 NDY = 2*NEY+1 NDZ = 2*NEZ+1 C======================================================================= C NEZ: NEMBER OF VERTICAL ELEMENTS C NEY: NEMBER OF DEPTH ELEMENTS C NEX: NEMBER OF HORIZONTAL ELEMENTS C======================================================================= WRITE (*,*)'YOUNG MODULUS = ',YOUNG WRITE (*,*)'POISSON RATIO = ',POISSON C======================================================================= C ELEMENT CREATION NE = 0 DO I = 1 , NEX DO J = 1 , NEZ DO K = 1 , NEY NE = NE + 1 IF ( NE .GT. MXE ) STOP 'NE > MXE' C------- BOTTOM FLOOR NODEX(NE,1) = (I-1)*NDY*NDZ*2 + (J-1)*NDY*2 + (K-1)*2 + 1 NODEX(NE,2) = NODEX(NE,1) + NDY*NDZ NODEX(NE,3) = NODEX(NE,2) + NDY*NDZ NODEX(NE,4) = NODEX(NE,3) + 1 NODEX(NE,5) = NODEX(NE,4) + 1 NODEX(NE,8) = NODEX(NE,1) + 1 NODEX(NE,7) = NODEX(NE,8) + 1 NODEX(NE,9) = NODEX(NE,2) + 1 NODEX(NE,6) = NODEX(NE,9) + 1 C------- MIDIUM FLOOR NODEX(NE,10) = NODEX(NE,1) + NDY NODEX(NE,17) = NODEX(NE,10) + 1 NODEX(NE,16) = NODEX(NE,17) + 1 NODEX(NE,11) = NODEX(NE,10) + NDY*NDZ NODEX(NE,18) = NODEX(NE,11) + 1 NODEX(NE,15) = NODEX(NE,18) + 1 NODEX(NE,12) = NODEX(NE,11) + NDY*NDZ NODEX(NE,13) = NODEX(NE,12) + 1 NODEX(NE,14) = NODEX(NE,13) + 1 C------- TOP FLOOR NODEX(NE,19) = NODEX(NE,10) + NDY NODEX(NE,26) = NODEX(NE,19) + 1 NODEX(NE,25) = NODEX(NE,26) + 1 NODEX(NE,20) = NODEX(NE,19) + NDY*NDZ NODEX(NE,27) = NODEX(NE,20) + 1 NODEX(NE,24) = NODEX(NE,27) + 1 NODEX(NE,21) = NODEX(NE,20) + NDY*NDZ NODEX(NE,22) = NODEX(NE,21) + 1 NODEX(NE,23) = NODEX(NE,22) + 1 END DO END DO END DO WRITE (*,*) 'NUMBER OF ELEMENTS =', NE CALL BANDWID ( ND, MXE, NE, NODEX , NBW ) C======================================================================= C--------0---------0---------0---------0---------0---------0---------0-- C NODAL COORDINATE CREATION NNODE = 0 DO I = 1 , NDX DO K = 1 , NDZ DO J = 1 , NDY NNODE = NNODE + 1 IF ( NNODE .GT. MXN ) STOP 'NNODE > MXN' XCOORD(NNODE) = (I-1)*DX YCOORD(NNODE) = (J-1)*DY ZCOORD(NNODE) = (K-1)*DZ END DO END DO END DO WRITE (*,*) 'NUMBER OF NODAL POINTS =', NNODE C======================================================================= C BOUNDARY CONDITIONS C==== FIRST FIND C--------- NAVIER EQUATIONS NBFX = 0 NBFY = 0 NBFZ = 0 NFORCEX = 0 NFORCEY = 0 NFORCEZ = 0 C----------------------------------------------- C--------- X DIRECTION ON FACE -X DO K = 1 , NDZ DO J = 1 , NDY NBFX = NBFX + 1 IBNDFX(NBFX) = J + (K-1)*NDY BVX(NBFX) = 0.D0 END DO END DO C----------------------------------------------- C--------- Y DIRECTION ON FACE -X NEUTRAL LINE DO K = 1 , NDZ NBFY = NBFY + 1 IBNDFY(NBFY) = NDY/2+1 + (K-1)*NDY BVY(NBFY) = 0.D0 END DO C----------------------------------------------- C--------- Z DIRECTION ON FACE -X NEUTRAL LINE DO J = 1 , NDY NBFZ = NBFZ + 1 IBNDFZ(NBFZ) = NEZ/2*NDY*2 + J BVY(NBFZ) = 0.D0 END DO C----------------------------------------------- WRITE(*,*) 'NUMBER OF DIRICHLET BOUNDARY CONDITIONS IN X=',NBFX WRITE(*,*) 'NUMBER OF DIRICHLET BOUNDARY CONDITIONS IN Y=',NBFY WRITE(*,*) 'NUMBER OF DIRICHLET BOUNDARY CONDITIONS IN Z=',NBFZ C=============================================== C==== SECOND KIND C--------- FACE OF +X FORCEINX = 1000.D0 C TIP END LOWER POINT DO I = 1 , NDY NFORCEX = NFORCEX + 1 IBFORCEX(NFORCEX) = NDY*NDZ*NEX*2 + I IF ( I .EQ. 1 .OR. I .EQ. NDY ) THEN BVFORCEX(NFORCEX) = FORCEINX*DY/2.D0 ELSE BVFORCEX(NFORCEX) = FORCEINX*DY END IF END DO C TIP END UPPER POINT FORCEINX = -1000.D0 DO I = 1 , NDY NFORCEX = NFORCEX + 1 IBFORCEX(NFORCEX) = NDY*NDZ*NDX - NDY + I IF ( I .EQ. 1 .OR. I .EQ. NDY ) THEN BVFORCEX(NFORCEX) = FORCEINX*DY/2.D0 ELSE BVFORCEX(NFORCEX) = FORCEINX*DY END IF END DO C----------------------------------------------- WRITE(*,*) 'NUMBER OF NEWMANN BOUNDARY CONDITIONS IN X=',NFORCEX WRITE(*,*) 'NUMBER OF NEWMANN BOUNDARY CONDITIONS IN Y=',NFORCEY WRITE(*,*) 'NUMBER OF NEWMANN BOUNDARY CONDITIONS IN Z=',NFORCEZ C======================================================================= C DATA FILE INQUIRY EXFILE = 'NEW' INQUIRE ( FILE = INPFILE, EXIST = YES ) IF ( YES ) EXFILE='OLD' C======================================================================= C CREATING DATA FILES C---------- PARAMETERS OPEN ( 1, FILE=INPFILE, STATUS = EXFILE ) WRITE(1,*) YOUNG , POISSON C---------- ELEMENTS WRITE(1,*) NE DO I = 1 , NE WRITE (1,*) I, (NODEX(I,J), J = 1 , ND ) END DO C---------- COORDINATES OF NONAL POINTS WRITE(1,*) NNODE DO I = 1 , NNODE WRITE(1,*) I,XCOORD(I), YCOORD(I), ZCOORD(I) END DO C---------- DIRICHLET TYPE BOUNDARY CONDITIONS WRITE(1,*) NBFX DO I = 1 , NBFX WRITE (1,*) IBNDFX(I), BVX(I) END DO WRITE(1,*) NBFY DO I = 1 , NBFY WRITE (1,*) IBNDFY(I), BVY(I) END DO WRITE(1,*) NBFZ DO I = 1 , NBFZ WRITE (1,*) IBNDFZ(I), BVZ(I) END DO C======================================================================= C---------- NUEMANN TYPE BOUNDARY CONDITIONS WRITE(1,*) NFORCEX IF ( NFORCEX .GT. 0 ) THEN DO I = 1 , NFORCEX WRITE(1,*) IBFORCEX(I), BVFORCEX(I) END DO ENDIF WRITE(1,*) NFORCEY IF ( NFORCEY .GT. 0 ) THEN DO I = 1 , NFORCEY WRITE(1,*) IBFORCEY(I), BVFORCEY(I) END DO ENDIF WRITE(1,*) NFORCEZ IF ( NFORCEZ .GT. 0 ) THEN DO I = 1 , NFORCEZ WRITE(1,*) IBFORCEZ(I), BVFORCEZ(I) END DO ENDIF C---------- FINAL CLOSE (1) C---------- NEUTRAL NODAL NUMBERS C NODEL NUMBERS ALONG NEUTRAL LINE OF BEAM NNEUT = 1 NEUTRAL(NNEUT) = 2*NEZ/2*NDY + 2*NEY/2 + 1 DO I = 1 , NDX-1 NNEUT = NNEUT + 1 NEUTRAL(NNEUT) = NEUTRAL(NNEUT-1) + NDY*NDZ END DO C OPEN ( 1, FILE='NEUTRAL.DAT', STATUS = 'UNKNOWN') WRITE (1,*) NNEUT DO I = 1 , NNEUT WRITE (1,*) NEUTRAL(I) END DO CLOSE (1) C======================================================================= CALL BANDWID ( ND, MXE, NE, NODEX , NBW ) C------ CREATION OF PARAMETER FILE TO BE USED IN INCLUDE STATEMENT OPEN ( 1, FILE='PARAM.DAT', STATUS='UNKNOWN' ) WRITE (1,*) ' PARAMETER ( ND=',ND,' )' WRITE (1,*) ' PARAMETER ( INTEPT=',INTEPT,' )' WRITE (1,*) ' PARAMETER ( MXE=',NE,' )' WRITE (1,*) ' PARAMETER ( MXN=',NNODE,' )' WRITE (1,*) ' PARAMETER ( MXW=',NBW,' )' WRITE (1,*) ' PARAMETER ( MXB=',NBFX+NBFY+NBFZ,' )' CLOSE (1) STOP 'NORMAL TERMINATION' END C C SUBROUTINE BANDWID ( ND, MXE, NE, NODEX , NBW ) IMPLICIT REAL*8 ( A-H , O-Z ) DIMENSION NODEX(MXE,ND) NBW = 0 DO I = 1 , NE DO J = 1 , ND-1 DO K = J+1 , ND NBW = MAX0(NBW,IABS(NODEX(I,J)-NODEX(I,K))) END DO END DO END DO NBW = NBW + 1 WRITE(*,*) 'HALF BANDWIDTH + 1 =', NBW RETURN END