summaryrefslogtreecommitdiff
path: root/Dragon/src/DUO002.f
blob: 91e6a97ea5b0c6d00324a529e15de882d2566b85 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
*DECK DUO002
      SUBROUTINE DUO002(IPRINT,NMIX,NGRP,LENER,ZKEFF1,ZKEFF2,RHS1,RHS2,
     > LHS1,LHS2,FLUX2,AFLUX1)
*
*-----------------------------------------------------------------------
*
*Purpose:
* Print the detail of mixture delta-rho discrepancies between two
* calculations
*
*Copyright:
* Copyright (C) 2013 Ecole Polytechnique de Montreal
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version
*
*Author(s): A. Hebert
*
*Parameters: input
* IPRINT  print parameter.
* NMIX    number of mixtures.
* NGRP    number of energy groups.
* LENER   energy group analysis flag.
* ZKEFF1  effective multiplication factor of the first calculation.
* ZKEFF2  effective multiplication factor of the second calculation.
* RHS1    absorption macroscopic cross-section matrix for the first
*         calculation.
* RHS2    absorption macroscopic cross-section matrix for the second
*         calculation.
* LHS1   production macroscopic cross-section matrix for the first
*         calculation.
* LHS2    production macroscopic cross-section matrix for the second
*         calculation.
* FLUX2   flux for the second calculation.
* AFLUX1  adjoint flux for the first calculation.
*
*-----------------------------------------------------------------------
*
*----
*  SUBROUTINE ARGUMENTS
*----
      INTEGER IPRINT,NMIX,NGRP
      LOGICAL LENER
      REAL ZKEFF1,ZKEFF2,RHS1(NGRP,NGRP,NMIX),RHS2(NGRP,NGRP,NMIX),
     > LHS1(NGRP,NGRP,NMIX),LHS2(NGRP,NGRP,NMIX),FLUX2(NGRP,NMIX),
     > AFLUX1(NGRP,NMIX)
*----
*  LOCAL VARIABLES
*----
      DOUBLE PRECISION ZNUM,ZDEN,RHO12
      CHARACTER TEXT12*12
*----
*  ALLOCATABLE ARRAYS
*----
      REAL, ALLOCATABLE, DIMENSION(:) :: RHO1,RHO2
      REAL, ALLOCATABLE, DIMENSION(:,:) :: RHO
*----
*  SCRATCH STORAGE ALLOCATION
*----
      ALLOCATE(RHO(NGRP,NMIX),RHO1(NGRP),RHO2(NMIX))
*----
*  RAYLEIGH RATIO FOR THE FIRST SYSTEM
*----
      IF(IPRINT.GT.1) THEN
        ZNUM=0.0D0
        ZDEN=0.0D0
        DO IBM=1,NMIX
          DO IGR=1,NGRP
            DO JGR=1,NGRP
              ZNUM=ZNUM+LHS1(JGR,IGR,IBM)*AFLUX1(JGR,IBM)*FLUX2(IGR,IBM)
              ZDEN=ZDEN+RHS1(JGR,IGR,IBM)*AFLUX1(JGR,IBM)*FLUX2(IGR,IBM)
            ENDDO
          ENDDO
        ENDDO
        WRITE(6,100) 1,ZNUM/ZDEN,ZKEFF1
      ENDIF
*----
*  RAYLEIGH RATIO FOR THE SECOND SYSTEM
*----
      IF(IPRINT.GT.1) THEN
        ZNUM=0.0D0
        ZDEN=0.0D0
        DO IBM=1,NMIX
          DO IGR=1,NGRP
            DO JGR=1,NGRP
              ZNUM=ZNUM+LHS2(JGR,IGR,IBM)*AFLUX1(JGR,IBM)*FLUX2(IGR,IBM)
              ZDEN=ZDEN+RHS2(JGR,IGR,IBM)*AFLUX1(JGR,IBM)*FLUX2(IGR,IBM)
            ENDDO
          ENDDO
        ENDDO
        WRITE(6,100) 2,ZNUM/ZDEN,ZKEFF2
      ENDIF
*----
*  PERTURBATIVE ANALYSIS WITH THE CLIO FORMULA
*----
      RHO(:NGRP,:NMIX)=0.0
      RHO1(:NGRP)=0.0
      RHO2(:NMIX)=0.0
      ZDEN=0.0D0
      DO IBM=1,NMIX
        DO IGR=1,NGRP
          DO JGR=1,NGRP
            DRHS=(RHS2(JGR,IGR,IBM)-RHS1(JGR,IGR,IBM))
            DLHS=(LHS2(JGR,IGR,IBM)-LHS1(JGR,IGR,IBM))
            RHO(IGR,IBM)=RHO(IGR,IBM)+(DRHS-DLHS/ZKEFF1)*
     >      AFLUX1(JGR,IBM)*FLUX2(IGR,IBM)
            ZDEN=ZDEN+LHS2(JGR,IGR,IBM)*AFLUX1(JGR,IBM)*
     >      FLUX2(IGR,IBM)
          ENDDO
        ENDDO
      ENDDO
      RHO12=0.0D0
      DO IBM=1,NMIX
        DO IGR=1,NGRP
          RHO(IGR,IBM)=RHO(IGR,IBM)*1.0E5/REAL(ZDEN)
          RHO1(IGR)=RHO1(IGR)+RHO(IGR,IBM)
          RHO2(IBM)=RHO2(IBM)+RHO(IGR,IBM)
          RHO12=RHO12+RHO(IGR,IBM)
        ENDDO
      ENDDO
      DELLAM=((1./ZKEFF2)-(1./ZKEFF1))*1.0E5
      DELTA=ABS(DELLAM-REAL(RHO12))
      IF(DELTA.GT.2.0) CALL XABORT('DUO002: FAILURE OF DUO: MODULE TO '
     > //'ANALYSE THE DELTA-RHO DISCREPANCY WITHIN 2 PCM.')
*----
*  PRINT DELTA-RHO
*----
      IF(LENER) THEN
        WRITE(6,'(/47H DUO002: DELTA-RHO MIXTURE-MULTIGROUP DISCREPAN,
     >  12HCIES IN PCM:)')
        WRITE(6,'(14X,9I12)') (IGR,IGR=1,NGRP)
        IF(IPRINT.GT.0) THEN
          DO IBM=1,NMIX
            WRITE(TEXT12,'(4HMIXT,I6.6)') IBM
            WRITE(6,110) TEXT12,(RHO(IGR,IBM),IGR=1,NGRP)
          ENDDO
        ENDIF
        WRITE(6,120) (RHO1(IGR),IGR=1,NGRP)
      ENDIF
      WRITE(6,'(/48H DUO002: DELTA-RHO MIXTURE-DISCREPANCIES IN PCM:)')
      DO IBM=1,NMIX
        WRITE(TEXT12,'(4HMIXT,I6.6)') IBM
        WRITE(6,110) TEXT12,RHO2(IBM)
      ENDDO
      WRITE(6,120) RHO12
      WRITE(6,'(14H  *** SUM *** ,F12.2,8H (EXACT))') DELLAM
*----
*  SCRATCH STORAGE DEALLOCATION
*----
      DEALLOCATE(RHO2,RHO1,RHO)
      RETURN
*
  100 FORMAT(16H DUO002: SYSTEM=,I2,21H DIRECT-ADJOINT KEFF=,1P,E13.5,
     > 13H EXACT VALUE=,E13.5)
  110 FORMAT(1X,A12,1X,9F12.2/(14X,9F12.2))
  120 FORMAT(/14H  *** SUM *** ,9F12.2/(14X,9F12.2))
      END