1 | SUBROUTINE PRANGE(ARG)
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2 |
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3 | C-----------------------------------------------------------------------
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4 | C (DECAYING) P(ARTICLE'S) RANGE
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5 | C
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6 | C DETERMINES MEAN FREE PATH FOR DECAYING PARTICLES
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7 | C INCLUDING IONIZATION ENERGY LOSS,
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8 | C FOR EACH LAYER OF THE ATMOSOHERE SEPARATELY
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9 | C PRECISELY
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10 | C THIS SUBROUTINE IS CALLED FROM BOX2
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11 | C ARGUMENT:
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12 | C ARG = -LOG(RANDOM NUMBER) * SPEED OF LIGHT * LIFETIME
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13 | C
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14 | C DESIGN : D. HECK IK3 FZK KARLSRUHE
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15 | C-----------------------------------------------------------------------
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16 |
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17 | IMPLICIT NONE
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18 | *KEEP,AIR.
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19 | COMMON /AIR/ COMPOS,PROBTA,AVERAW,AVOGAD
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20 | DOUBLE PRECISION COMPOS(3),PROBTA(3),AVERAW,AVOGAD
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21 | *KEEP,ATMOS.
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22 | COMMON /ATMOS/ AATM,BATM,CATM,DATM
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23 | DOUBLE PRECISION AATM(5),BATM(5),CATM(5),DATM(5)
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24 | *KEEP,ATMOS2.
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25 | COMMON /ATMOS2/ HLAY,THICKL
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26 | DOUBLE PRECISION HLAY(5),THICKL(5)
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27 | *KEEP,CONST.
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28 | COMMON /CONST/ PI,PI2,OB3,TB3,ENEPER
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29 | DOUBLE PRECISION PI,PI2,OB3,TB3,ENEPER
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30 | *KEEP,OBSPAR.
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31 | COMMON /OBSPAR/ OBSLEV,THCKOB,XOFF,YOFF,THETAP,PHIP,
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32 | * THETPR,PHIPR,NOBSLV
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33 | DOUBLE PRECISION OBSLEV(10),THCKOB(10),XOFF(10),YOFF(10),
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34 | * THETAP,THETPR(2),PHIP,PHIPR(2)
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35 | INTEGER NOBSLV
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36 | *KEEP,PAM.
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37 | COMMON /PAM/ PAMA,SIGNUM
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38 | DOUBLE PRECISION PAMA(6000),SIGNUM(6000)
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39 | *KEEP,PARPAR.
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40 | COMMON /PARPAR/ CURPAR,SECPAR,PRMPAR,OUTPAR,C,
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41 | * E00,E00PN,PTOT0,PTOT0N,THICKH,ITYPE,LEVL
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42 | DOUBLE PRECISION CURPAR(14),SECPAR(14),PRMPAR(14),OUTPAR(14),
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43 | * C(50),E00,E00PN,PTOT0,PTOT0N,THICKH
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44 | INTEGER ITYPE,LEVL
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45 | *KEEP,PARPAE.
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46 | DOUBLE PRECISION GAMMA,COSTHE,PHI,H,T,X,Y,CHI,BETA,GCM,ECM
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47 | EQUIVALENCE (CURPAR(2),GAMMA), (CURPAR(3),COSTHE),
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48 | * (CURPAR(4), PHI ), (CURPAR(5), H ),
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49 | * (CURPAR(6), T ), (CURPAR(7), X ),
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50 | * (CURPAR(8), Y ), (CURPAR(9), CHI ),
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51 | * (CURPAR(10),BETA), (CURPAR(11),GCM ),
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52 | * (CURPAR(12),ECM )
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53 | *KEEP,RUNPAR.
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54 | COMMON /RUNPAR/ FIXHEI,THICK0,HILOECM,HILOELB,
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55 | * STEPFC,NRRUN,NSHOW,PATAPE,MONIIN,
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56 | * MONIOU,MDEBUG,NUCNUC,
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57 | * CETAPE,
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58 | * SHOWNO,ISHW,NOPART,NRECS,NBLKS,MAXPRT,NDEBDL,
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59 | * N1STTR,MDBASE,
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60 | * DEBDEL,DEBUG,FDECAY,FEGS,FIRSTI,FIXINC,FIXTAR,
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61 | * FIX1I,FMUADD,FNKG,FPRINT,FDBASE
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62 | * ,GHEISH,GHESIG
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63 | COMMON /RUNPAC/ DSN,HOST,USER
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64 | DOUBLE PRECISION FIXHEI,THICK0,HILOECM,HILOELB
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65 | REAL STEPFC
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66 | INTEGER NRRUN,NSHOW,PATAPE,MONIIN,MONIOU,MDEBUG,NUCNUC,
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67 | * SHOWNO,ISHW,NOPART,NRECS,NBLKS,MAXPRT,NDEBDL,
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68 | * N1STTR,MDBASE
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69 | INTEGER CETAPE
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70 | CHARACTER*79 DSN
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71 | CHARACTER*20 HOST,USER
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72 |
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73 | LOGICAL DEBDEL,DEBUG,FDECAY,FEGS,FIRSTI,FIXINC,FIXTAR,
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74 | * FIX1I,FMUADD,FNKG,FPRINT,FDBASE
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75 | * ,GHEISH,GHESIG
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76 | *KEND.
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77 |
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78 | DOUBLE PRECISION AK,ARG,ARG0,BK,CHIT,DK,ELOSS
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79 | DOUBLE PRECISION GAMK,GAMNEW,GAMSQ,GAM0,GMSQM1,H0,TH0
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80 | INTEGER ILAY
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81 | C-----------------------------------------------------------------------
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82 |
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83 | IF ( DEBUG ) WRITE(MDEBUG,444) ARG,THICKH
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84 | 444 FORMAT(' PRANGE: -LOG(RD)*C*TAU = ',1P,E10.3,' THICKH=',E10.3)
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85 |
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86 | C LOOK WITHIN WHICH LAYER THE PARTICLE STARTS
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87 | IF ( H .LE. HLAY(2) ) THEN
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88 | ILAY = 1
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89 | TH0 = THICKH
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90 | ELSEIF ( H .LE. HLAY(3) ) THEN
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91 | ILAY = 2
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92 | TH0 = THICKH
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93 | ELSEIF ( H .LE. HLAY(4) ) THEN
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94 | ILAY = 3
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95 | TH0 = THICKH
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96 | ELSE
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97 | ILAY = 4
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98 | TH0 = MAX( THICKH, 2.D-4 )
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99 | ENDIF
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100 | C SET START VALUES FOR ITERATION
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101 | ARG0 = ARG
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102 | CHIT = 0.D0
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103 | GAM0 = GAMMA
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104 | H0 = H
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105 |
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106 | 2 CONTINUE
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107 | GAM0 = MAX( GAM0, 1.0001D0 )
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108 | GAMSQ = GAM0**2
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109 | GMSQM1 = GAMSQ - 1.D0
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110 | C ENERGY LOSS BY IONIZATION
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111 | ELOSS = SIGNUM(ITYPE)**2 * C(22) *
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112 | * ( GAMSQ * (LOG(GMSQM1) + C(23)) / GMSQM1 - 1.D0 )
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113 | ELOSS = ELOSS / (PAMA(ITYPE) * COSTHE )
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114 | BK = ELOSS * (TH0 - AATM(ILAY))
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115 | DK = GAM0 + BK
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116 | AK = ARG0 * DK * COSTHE * DATM(ILAY)
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117 | IF ( AK .LT. 174.D0 ) THEN
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118 | C LIMIT FOR EXPONENT (ON IBM COMPUTER)
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119 | GAMNEW = MAX( GAM0 * DK / ( GAM0 + BK * EXP(AK) ), 1.D0 )
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120 | ELSE
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121 | GAMNEW = 1.D0
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122 | ENDIF
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123 | GAMK = GAM0 - ELOSS * ( THICKL(ILAY) - TH0)
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124 | IF ( DEBUG ) WRITE(MDEBUG,*) 'PRANGE: GAMNEW,GAMK=',
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125 | * SNGL(GAMNEW),SNGL(GAMK)
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126 | C LOOK WETHER PARTICLE PENETRATES LAYER BOUNDARY OR DECAYS BEFORE
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127 | IF ( GAMNEW .LT. GAMK .AND. ILAY. GT. 1 ) THEN
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128 | C CALCULATE PORTION OF RANGE AND NEW START VALUES AT LAYER BOUNDARY
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129 | ARG0 = ARG0 - ( H0 - HLAY(ILAY) + CATM(ILAY) * LOG(GAM0/GAMK) )
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130 | * / (DK * COSTHE)
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131 | CHIT = CHIT + (THICKL(ILAY) - TH0) / COSTHE
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132 | GAM0 = GAMK
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133 | H0 = HLAY(ILAY)
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134 | TH0 = THICKL(ILAY)
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135 | ILAY = ILAY - 1
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136 | GOTO 2
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137 | ENDIF
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138 | C PENETRATED MATTER THICKNESS
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139 | CHI = CHIT + (GAM0 - GAMNEW) / (ELOSS*COSTHE)
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140 | IF ( DEBUG ) WRITE(MDEBUG,445) CHI
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141 | 445 FORMAT(' PRANGE: CHI = ',1P,E10.3)
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142 |
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143 | RETURN
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144 | END
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