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
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
|
*DECK PIJS3D
SUBROUTINE PIJS3D(NREG,NSOUT,NSLINE,WEIGHT,RCUTOF,SIGTAL,
> SEGLEN,NRSEG,STAYIN,GOSOUT,DPR)
*
*-----------------------------------------------------------------------
*
*Purpose:
* Integration for general 3D specular tracking.
*
*Copyright:
* Copyright (C) 1991 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): R. Roy, G. Marleau
*
*Parameters: input
* NREG total number of regions.
* NSOUT number of outer surface.
* NSLINE number of segemnts on line.
* WEIGHT line weight.
* RCUTOF MFP cut-off factor (truncate lines).
* SIGTAL albedo-cross section vector.
* SEGLEN length of track.
* NRSEG region crossed by track.
*
*Parameters: output
* DPR collision probabilities.
*
*Parameters: scratch
* STAYIN stay-in zone probability.
* GOSOUT goes-out zone probability.
*
*References:
* R. Roy et al.,
* A Cyclic Tracking Procedure for CP Calculations in 2-D Lattices
* Conf/Advances in Math, Comp & Reactor Physics,
* Pittsburgh, V 1, P 2.2 4-1 (1991).
*
*-----------------------------------------------------------------------
*
IMPLICIT NONE
*----
* VARIABLES
*----
INTEGER NREG,NSOUT,NSLINE,NRSEG(NSLINE)
REAL RCUTOF,SIGTAL(-NSOUT:NREG)
DOUBLE PRECISION WEIGHT,SEGLEN(NSLINE),STAYIN(NSLINE),
> GOSOUT(NSLINE)
DOUBLE PRECISION DPR(-NSOUT:NREG,-NSOUT:NREG)
*----
* Local variables
*----
INTEGER IL,JL,NOIL,NOJL,ISODD,JSODD,IJDEL
DOUBLE PRECISION TTOT,XSIL,OPATH,FINV,CUTOF
REAL ZERO,ONE,HALF
PARAMETER (ZERO=0.0E0, ONE=1.0E0, HALF=0.5E0 )
REAL SIXT,CUTEXP
PARAMETER (SIXT=HALF/3.0,CUTEXP=0.02)
DOUBLE PRECISION EXSIL,XSIL2
TTOT= ONE
*
*1.1) CHANGE PATHS => GOSOUT AND STAYIN PATHS, INCLUDING ALBEDOS
* ADD *PII* LOCAL NON-CYCLIC CONTRIBUTIONS
ISODD=0
DO 30 IL= 1, NSLINE
NOIL = NRSEG(IL)
IF( NOIL.LT.0 )THEN
IF(ISODD .EQ. 1) THEN
ISODD=0
*----
* FOR SURFACES:
* OLD VERSION BEFORE SURFACE DOUBLING
* GOSOUT= ALBEDO * SURFACE WEIGHT
* WHERE ALL SURFACE WEIGHTS WERE 1.0
* NEW VERSION WITH SURFACE DOUBLING
* GOSOUT= ALBEDO
* STAYIN = 1- ALBEDO * SURFACE WEIGHT
* TTOT = PRODUCT OF GOSOUT
*----
GOSOUT(IL)= SIGTAL(NOIL)
STAYIN(IL)= ONE - GOSOUT(IL)
TTOT= TTOT * GOSOUT(IL)
ELSE
ISODD=1
*----
* FOR SURFACES:
* OLD VERSION BEFORE SURFACE DOUBLING
* GOSOUT= ALBEDO * SURFACE WEIGHT
* WHERE ALL SURFACE WEIGHTS WERE 1.0
* NEW VERSION WITH SURFACE DOUBLING
* GOSOUT= ALBEDO
* STAYIN = 1- ALBEDO * SURFACE WEIGHT
* TTOT = PRODUCT OF GOSOUT
*----
GOSOUT(IL)= SIGTAL(NOIL)
STAYIN(IL)= ONE
ENDIF
ELSE
*----
* FOR REGIONS
* STAYIN = 1 - EXP[ -CROSS SECTION * LENGTH OF NSLINE]
* GOSOUT = 1 - STAYIN
* TTOT = PRODUCT OF GOSOUT
*----
XSIL = SIGTAL(NOIL)
IF( XSIL .EQ. ZERO) THEN
GOSOUT(IL)= ONE
STAYIN(IL)= SEGLEN(IL)
DPR(NOIL,NOIL)= DPR(NOIL,NOIL)
> + HALF*WEIGHT*STAYIN(IL)*STAYIN(IL)
ELSE IF( XSIL .LT. CUTEXP) THEN
OPATH= SIGTAL(NOIL)*SEGLEN(IL)
XSIL2=OPATH*OPATH
EXSIL=XSIL2*(HALF-SIXT*OPATH+XSIL2/24.0)
STAYIN(IL)=OPATH-EXSIL
GOSOUT(IL)= ONE - STAYIN(IL)
TTOT= TTOT * GOSOUT(IL)
DPR(NOIL,NOIL)= DPR(NOIL,NOIL) + WEIGHT*EXSIL
ELSE
OPATH= SIGTAL(NOIL)*SEGLEN(IL)
EXSIL= EXP(-OPATH)
STAYIN(IL)= ONE - EXSIL
GOSOUT(IL)= EXSIL
TTOT= TTOT * GOSOUT(IL)
DPR(NOIL,NOIL)= DPR(NOIL,NOIL)
> + WEIGHT*(OPATH-STAYIN(IL))
ENDIF
ENDIF
30 CONTINUE
*
*1.2) COMPUTE CYCLIC FACTORS BY ANGLE
* USING GLOBAL TRACK ATTENUATION: BETA(TOT)*EXP(-MFP(TOT))
IF(TTOT .GE. ONE )THEN
CALL XABORT( 'PIJS3D: ALBEDOS ARE NOT COMPATIBLE')
ENDIF
FINV= WEIGHT / (ONE-TTOT)
*
*1.3) ADD *PIJ* CONTRIBUTIONS FOR FORWARD SOURCES
ISODD=0
DO 50 IL= 1, NSLINE
NOIL = NRSEG(IL)
TTOT= FINV * STAYIN(IL)
CUTOF= RCUTOF*TTOT
IF( NOIL .LT. 0) THEN
ISODD=MOD(ISODD+1,2)
JSODD=ISODD
DO 70 IJDEL= 1, NSLINE
JL= MOD(IL+IJDEL-1,NSLINE) + 1
NOJL=NRSEG(JL)
IF( NOJL .LT. 0 ) THEN
JSODD=MOD(JSODD+1,2)
IF( ISODD.EQ.1 .AND. JSODD .EQ.0) THEN
DPR(NOJL,NOIL)= DPR(NOJL,NOIL) + TTOT * STAYIN(JL)
TTOT= TTOT * GOSOUT(JL)
IF( TTOT.LE.CUTOF ) GO TO 55
ENDIF
ELSE IF(ISODD.EQ.1) THEN
DPR(NOJL,NOIL)= DPR(NOJL,NOIL) + TTOT * STAYIN(JL)
TTOT= TTOT * GOSOUT(JL)
IF( TTOT.LE.CUTOF ) GO TO 55
ENDIF
70 CONTINUE
ELSE
JSODD=ISODD
DO 80 IJDEL= 1, NSLINE
JL= MOD(IL+IJDEL-1,NSLINE) + 1
NOJL=NRSEG(JL)
IF( NOJL .LT. 0 ) THEN
JSODD=MOD(JSODD+1,2)
IF( JSODD .EQ.0) THEN
DPR(NOJL,NOIL)= DPR(NOJL,NOIL) + TTOT * STAYIN(JL)
TTOT= TTOT * GOSOUT(JL)
IF( TTOT.LE.CUTOF ) GO TO 55
ENDIF
ELSE
DPR(NOJL,NOIL)= DPR(NOJL,NOIL) + TTOT * STAYIN(JL)
TTOT= TTOT * GOSOUT(JL)
IF( TTOT.LE.CUTOF ) GO TO 55
ENDIF
80 CONTINUE
ENDIF
55 CONTINUE
50 CONTINUE
RETURN
END
|