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FROGRAM FOR POTASH LOG ANALYSIS Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II 1620 Comp u ter (60K . storage ) 1622 Card Reader Punch

Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

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Page 1: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

FROGRAM FOR POTASH LOG ANALYSIS

Camma Ray Log

For 1. B.M.

LB.H.

Neutron Log

Sonic Log

Density Log

FORTRAN II

1620 Comp u ter (60K . storage)

1622 Card Reader Punch

Page 2: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

DI SCUSSION OF THE METHOD

A recent paper published by t he C.I.M.M. entitled "Quantitative Log Evaluation of the

Prairie Evaporite Formations in Saskatchewarr' by Crain and Anderson describes a method

of making quantitative calculations 1n the potash bearing section of the prairie eva-

porlte formation using Gamma Ray, Neutron and Sonic logs . The Density log is mentioned

but is not. included in the calculations. In order to include the D'enaity log and assess

the various log combinations that can be assembled J this program has been prepared.

Ye are dealing with four minerals - Sylvite , Carnalite, Halite and insoluhles (Shale),

and want to find the percentage of each. An equation can be constructed from each of the

four logs and we can then solve them for the four unknowns. The four logs are Gamma Ray,

Neutron, Sonic and Density. If we let the eum of our four unknowne equal 100% we can

have a fifth equation to work with that allows ue to make e solution with only three

logs plus the summation equation.

MINERAL PARAMETER

Appearant K2 0 Hydrogen Index Appearant Sonic Rating (neutron 6) Density Travel Time

% .. gms/cc microseconds/ft

Salt Na Cl 0 0 2 .03 67.0

Sylvite K Cl 63 0 1.86 74.0

Carnalite K Cl Mg C12 . 6R2O 17 . 0 65.0 1.57 78

Insolublcs(ahale) 5.0 30.0 2.60 120.0

Making use of the tabulated parameters and with the symbols from the Crain-Anderson paper

where ts.lt - w, ~ Sylvite - xJ~ Carnalite - y and % insoluables a z.

From the Gamma Ray 0. ,;;~ 0.63x + 0 .11y + O.~ - K20 appearant -- eq'n 1

From the Neutron

0 . 65y + 0.30 • • ~n -- eq'n 2

Page 3: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-2-

From the Sonic

67w + 74x + 78y + 120 •• 100 6t log -- eq'n 3

From the Density log

2.02w + 1.86x + 1.57y + 2.60 •• 100')-- eq'n 4

Our fifth equation 1a the summation

x + y + z + w - 100 •• eq'n 5

The Gamma Ray is the only measurement that responds to potassium 80 we will need it in

every combination. We can substitute the summations equation for one of the three mea-

surements other than Gamma Ray and arrive at the following combinations.

Option (1) Gamma Ray, Neutron, Sonic

Equations 1, 2, 3 and 5

This 1s the combination used 1n the Crain-Anderson paper .

Option (2) Gamma Ray, Sonic. Density

Equations 1, 3, 4 and 5

Option (3) Gamma Ray. Neutron. Density

Equations 1, 2, 4 and 5

Option (4) Gamma Ray, Neutron, Sonic, Density

Equations I, 2, 3 and 4

Option (4) punches out the sum of x, Y. z and W 8S a check on the accuracy of the

calculations.

Page 4: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-3-

COMPUTER PROGRAM FOR POTASH LOG ANALYSIS

for I.B.M. 1620 computer (60K storage)

I.B.M. 1622 Card reader - punch

The purpose of the program 18 to compute the values of:

- percent sylvite

- percent carnalite

- percent salt (halite)

- percent in801ubles

from the data provided by various combinations of Gamma Ray, Neutron, Sonic and Density

logs.

PROGRAM INPUT REQUIREMENTS

The input i. by punched cards; one card for each interval to be evaluated.

PROGRAM OUTPUT

The output from the program is punched cards which can be used for off line listing.

They contain the computed values of percent Sylvite, Carnalite. Insoluble. and Salt

plus the input date for the level.

INPUT DATA

The input i8 punched cards with the format of: F5.1, F3.0. F4 .0 1 F3.I, F3.2, Fl.l

one card i8 punched for each level. Card layout is as follows:

Columns Function Instructions Units

1-5 D punch depth feet

6-8 G punch Gemma Ray A.P.I. Units

9-12 XNL punch Neutron Log reading A.P.1. Units

13-15 T punch Sonic Log reading microseconds per

16-18 ROW punch Density Log reading grms. per c.c.

19-21 H.S. punch hole size inches

foot

Page 5: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-4-

If all six columna of input are punched the program will select options (4) - Gamma

Ray, Neutron, Sonic, Density.

If another option, for a different log combination is desired then the appropriate

column of the input card is left blank. e.g. If information from the Gamma Ray, Neutron

and Sonic log a i_ available then the fifth field entitled ROW would then be left blank.

WELL INFORMATION CARDS

Five cards are provided for the name of the company, well name, location or any other

information that may be needed. The card format permits 80 columns to be used with any

combination of digits or alphabetical characters. Five well information cards must be

used whether they contain well information or are blank.

WELL PARAMETER CARD

This card contains the mud weight in Iba/gallon punched in columns 1-3. The number 99

is punched in columns 79·80. This is to allow the printing of an error message in case

the mud weight card is missing.

PROGRAM CONTROL CARD

To start processing data from a second 'Well, place a card with a minus one (-1) punched

in columns 1 to 5 after the last log data card. Follow this with 5 new well information

cards, a new well parameter card and then new log data cards.

TABLES

The relations between Gamma Ray deflection and K20 content and between Neutron log

reading and Hydrogen Index is contained 1n the following tables.

,

Page 6: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

.B Gamma Ray deflection

A.P.I. Units

o

45

90

135

175

220

265

310

355

400

435

470

505

530

550

565

580

590

600

605

999

-5-

Table 1

c

!5.20 appearant

o

2.5

5.0

7.5

10.0

12.5

15.0

17 .5

20.0

22.5

25.0

27.5

30.0

32.5

35.0

37.0

40.0

42 . 5

45.0

47.5

99.9

Page 7: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-li-

Table 2

' R V Neutron deflection . Hydrogen Index

A.P.I. Units %

0 99

600 65

800 50

1100 35

1300 26

1500 20

1700 16

2000 12

2200 9

2400 7

2600 5

3200 3

3600 2

4300 1

6000 0

Page 8: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-7-

The program symbols for these tables are B, C, R t V as labeled and are read in with

4 tables carda with the follOWing format.

Sytllbol

GR log

H log

No

w

x

y

K20t

K20S

K20c

K20aPP

~n

d

m

6.t log

B Format 2l (F 3.0)

C Format 21 (F 3.1)

R Format 15 (F 4.0)

V Format 15 (F 4.0)

SYMBOLS USED IN TIlE PROGRAM

Computer program equivalent

D

G

GR

GRC

XNL

XNC

w

x

y

z

XKOT

XKOS

XKOC

XKOA

p

HS

WM

T

Definition

Depth

Gamma Ray reading from log

Gamma Ray reading corrected for hole size

Gamma Ray reading corrected for hole size and mud weight

Neutron reading from log

Neutron log reading corrected for hole size

Percent Halite

Percent Sylvite

Percent Carnalite

Percent Insolubles

Sylvite percentage as KZO

Carnalite percentage as K20

K20 appearant from Gamma Ray log

Hydrogen index from Neutron log

Hole size

Mud weight

Reading from Sonic log

Units

feet

A. P. 1. units

A.P.I. units

A.P.I. units

A.P.1. units

A.P.I. units

percent

percent

percent

percent

percent

percent

percent

percent

percent.

inches

lhs/U.S. gallon

microseconds/ft

Page 9: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

-8-

Computer program S;:£!2bol eguivalent Definition Units

C RIM Reading from Density log gms/coco

SUM x+y+ w + z percent

B (J) Gamma Ray log values frO'al Table 1 A.P .r. units

C (J) K20 appearant values frOtq Table 1 percent:

R (K) Neutron log values from Table 2 , A.P.1. units

V (I<) Hydrogen Index values fr~ Table 2 Percent

Page 10: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

(1) , P unch Headini"l

Correct Neu~ I

ITaCle Look Up i ~eut.. ._

Solve for W, X, y:- z-; E!T ,.9.9 • . K0~

Punch Results

(2)

FLOW DIAGRAM S.O.C. POTASH LOG ANALYSIS FOR GAMMA RAY. NEUT. SONIC & DENSITY LOGS

I Dimen s tonH: _ C!.. R t ~= =-=:J , __ ,_ J _ -:;-, ~~~L~'. ~, ~J'!.!~!~

I

I R;;d- F-o-rmallin- . ...t4!!!.!!late~ _~_ WM

r Read Log oaJa 1_0, GLN_1 t:, ROW J HS __ .1

r--·_.-1-~:.!~t Ca~a Ray - ,

I r T8.bl-; Look Up-Gamma Ray

.A.. /'" ............. +

. IF ,1

-L'~' ~:~ ~

.

/ ,~ IF

..... , XNL ' +

'--=~o I :Punch Heading

i --r Solve for W, X, 0 . z, K¢C, K0S ,

I Punch Results , ,

(1)

(2)

(3)

(4)

Gamma Ray, Neut. Sonic

Gamma Ray, Sonic Density

Gamma Ray Neut . Density

Gamma Ray Neut., Sonic , Density

'--< " + )--- IF

.,(3).. "" '-""TC( '/ --=-. .J_ (4)

[Punc~~eading ! - ~nch_~~d_~~g

[Correc-t Ne"ut:T I _ -- ~~~ct ~e.':'t .

ITable Look UPT ) Neut . I ITable- Look Up

r-) Neut. Solve for W, X, i _ ; Y, z, K¢S, K¢C ._ I Solve for W, X. Y, Z.

I. K0C, K0S, SUM Punch Results I

Punch Results

Page 11: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

o [,r--,n

)

OBJECT DECK

4 TABLE CARDS

5 W~LL NAME CARDS

1 MUD WEIGHT CARD

LOG DATA CARDS

Page 12: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

ENTER S0URCE PR~GRAl'I, PRESS START

1 30 F0RHAT(7.1F3 00)

7. 32 F0RHAT(7.1F301)

3 31 F0RHAT( 15F400)

4 40 FORHAT(24H S0C P0TASH L0G ANALYSISIII)

5 41 OF0RHAT(80H

1 )

6 45 F0RHAT(F301,75X,F2 o0)

7 46 F0RHAT(2X,l1HHUO ~IEIGtlT-F501)

8 20 F0RHAT(F5 01,F3 o0, F4 o0,F3o1,F3o2,F3o1)

9 43 F0RHAT(III)

10 42 F0RHAT(80H DEPTH GR NL SL HS INS0L CARN SYLV S

lALT K0T K0C K0S/I II

11 44 F0RHAT(19HTABLE L00K UP ERR0R)

12 145 F0RHAT(80HDEPTH GR SL R0W HS INS0L CARN SYLV

1 SALT K0 CAR K0 SYL /1/1

13 146 F0RHA T (F 70 1 ,F6 0 0, F 7 0 1 ,F 7 0 2, F6 0 1 ,4 (F8 0 1 ) ,2 (F 7 0 1 » 14 47 F0Rl'1AT(80H DEPTH GR NL R0W tiS INS0L CARN SYL

IV SALT K CAR K0 SYL/I II

15 48 F0RHAT(F701,F6 o0,F7o 0,F7o2,F6o 1,4(F8o1), 2(F701))

16 49 F0RHAT( 78HOEPTH GR NL SL R0W HS INS0L CARN SYLV SALT

1 SUH K0 C K0 SYL/I II

1 7 39 F0RHAT (F 7 0 1 ,F5 0 0, F6 0 0, F5 0 1 ,F5 0 2, FS 0 1 ,4 (F 601 ) .3 (F 7 0 1 ) )

18 22 F0RHA T (F 7 0 1 .2 (F6 0 0) .2 (F 60 1 ) • 7 ( 1 X. F6 0 1) )

199997 F0RHAT(SOH MUB WEIGHT CARD MISSING 99 C0L 79 HUD 1-3)

20 SUM-OoO

21 1'1-0

22 W-OoO

23 X-OoO

24 Y-OoO

?~ Z .. O.O

Page 13: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

26 XK0TooO.D

• 27 XK0C-o.D

28 XK0S-D.D

29 XK0A-D.D

30 GR·O.O

3 I GRC-O.O

32 XNC-O.O

33 p.O.O

3" DIMENSION a(21),C(21),R(IS),V(IS)

35 READ 30.(B(J),J~I,21)

3L READ 32,(C(J),J-I,21)

37 READ 31,(R(K), K-I.1S)

38 READ 31,(V(K),K-l,IS)

39 70 PUNCH 40

40 00 54 Hal,S . 41 REAO 41

42 54 PUNCH .41

il3 215 READ ilS.WM , ,TEST

41, IF(TEST-99.0)998,115, 99H

45 998 PRINT 9997

46 PAUSE

il7 GO T0 215

48 115 PUNCH l.t" WH

49 PUNCH 43

50 15 READ 20,D,G,XNL,T,ROW,IIS

51 IF(D)60,u2,62

52 60 PUNCH 1'3 , •

53 Gil TO 70

5" 62 GR-G*(1.0+.OS*(HS-6.0»+(320.*(HS-6.0»/(G+l00.0)

55 GRC-GR*(1.0+0.10*(WM-7.2»)

56 DU 6 J-l, 21 ,1

57 IF (GRC-U(J» 1',5 ,6

Page 14: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

59 PUNCH Ill,

60 GO TD 15

61 5 XKOA-C(J)

62 G0 Til 2

63 4 XKOA-C(J-I)+(C(J)-C(J-I»*(GRC-B(J-I»/(B(J)-B(J-I»

61, 2 IF(RIlW)90,90,91

65 90 H~1

66

67

68

69

70

71

73

71,

75

76

77

78

79

80

81

82

83

84

8S

86

87

68

89

90

1F(H-I)17,18,17

18 PUNCH 42

17 XNC-XNL*(1.0+0.OS*(HS-6.0»

011 7 K-l, I 5 , I

IF(XNC-R(K» 10,9,7

7 CONTINUE

PUNCH 1>4

Gil Til 15

9 paVeK)

Gil Til 12

10 P-V(K-l)+(V(K)-V(K-l»*(XNC-R(K-I»/(R(K)-R(K-I»

12 Z-2.07*T-.23*XKOA-.29*P-140.0

Y-I.54*p- . 46*Z

X-I.59*XKIlA-O.41*P+.04*Z

W-I.50*T-I.79*XKIlA-I.38*p-1.3*Z

XKIlT-XKOA-0.05*Z

XKIlC-O.17*V

XKIlS-o. 63 *x

PUNc;,H "li·,D ... l>.XNL, T ,.HS ,Z ,Y ,X,W ,XKIlT ,XKIlC ,XK0S

IF(S£NS£ SWITCH 9) 16,15 . I

91 IF(XNL)92,92,93

92 IWI+I .

IF(H-!;)SO.51 ,50

51 PUNCH 1 "5 - . 50 Z-34.~*RIlW+l.49*T-.0286*XKIlA-170.0

.. .... - ......... - • .. I.a .... ." n~+T • .,nn n

Page 15: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

92 Y-ll.o*T-S.78.Z-1 . 12*XKBA-7~0.0

93 W-3. 3*Z--. 772*XKIlA-B. 03*T +640.0

91, XK0S-.63*X

95 XK0C-O.17*Y

96 PUNCH 146,O,G,T,R0W,HS,Z, Y,X,W,XK0C,XK0s

97 IF(SENSE SWITCH9)16,IS

98 93 IF-(T)9~,9~,95

99 9~ H-H+l

100 IF(H-1J52,53,52

101 53 PUNCH 47

102 52 XNC-XNL*(I . D+0. OS*(HS-6.0»

103 008 K-l,15,1

101, IF(XNC-R(K»13 , I~,O

105 8 C0NTINUE

106 PUNCH 44

107 r.C TO 15

loa 14 P-vO<J

109 G0 TO 63

110 13 P-V(K-l)+(V(K)-V(K-l»*(XNC-R(K-l»/(R(K)-R(K-l»

111 63 Z--265.D+.836*P+.344*XK0A+130.0*R0W

112 X-l.59*XK0A+.G455*Z-.416*P

113 Y-l.5~*P-.462*Z

11', W~9. 3*RIlW-. 962*Z-. 8OB*p-1 .46*XK0A

115 XK0S-.63*X

116 XK0C-.17*Y

117 PUNCH 1~,O,G,XNL , R0W,HS,Z,Y,X,W,XK0C,XK0S

118 IF(SENSE SWITCH9)16,15

119 95 M-M+l

120 IF(H-l)19,24,19

121 24 PUNCH 1'9

122 XNC-XNL*(1.D+0.05*(HS-o.O»

123 19 DO 2S K-l , 15, 1

Page 16: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

125 25 CONTINUE

126 PUNCH 44

127 GO T0 15

128· 27 P~V(K)

129 GO T0 29

130 26 P-V(K-l)+(V(K)-V(K-l»*(XNC-R(K-l»/(R(K)-R(K-l»

131 29 Z--lI,4.0*R0W-l.50*P-.852*XK0A+I'.3*T

132 Y-l.54*p-.462*Z

133 X-l.59*XK0A- . 416*p+.0455*Z

131, w.l.49*T-l.304*Z-I.33*P-l.75*XK0A

135 SUMaX+Y+Z+W

136 XKOC-.17*Y

137 XK0S-.63*X

138 PUNCH 39,D,G,XNl,T,R0W,HS,Z,Y,X,W,SUM,XK0C,XK0S

139 IF(SENSE SWITCH 9)16,15

140 16 ST0P

141 END

TURN SW 1 ON FOR SYfl00L TABLE, PRESS START

0000 11040 00001 11045 00021 11 050 00015 11055 00005 11 060

Page 17: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

'" 1 POTA<" w e. ~ .;"

DEP TH GR NL SL HS I NSOL _CAR N SY LV Sfll T KO T KOC KOS

4000 .0 22 . 2300. 6 4 .!.i 6 . 1 - 9. 1 16 .3 -1.2 95.0 1.9 2.1 -.7 40 00 . 5 30. 1600. 13.0 6 . 1 5.'t 2' .. 9 -3.9 74.1 1.7 4.2 -2.4

- 4001. 0 26. L6 50. 76.5 6 . 1 1 ~ .0 19 .9 -3.6 71.4 1.0 3.3 -2.2 4001.5 20 . 1800 . 77.0 6 .1 14. 8 15. 5 3.2 73.7 .5 2.6 -2.0 40 02.0 20 . 2250. 74. 5 6.1 11.4 7 . 6 -.8 82.8 .7 1.2 - . 5 40 02 .5 1 8;. 2800. 71. 5 6.1 6.5 3.3 .4 90 . 8 .8 .5 .2 400 3 .0 16 ' 2800. 71.5 6.1 6.5 3.3 .2 91.0 . 7 .5 .1 4003.5 20. 2650. 72.0 6.1 7.3 3.9 .4 89.4 .9 .6 .2 4 ~04. 0 22. 2550. 11.5 6.1 6.1 5.4 .3 89.2 1. 1 .9 .2 4004 . 5 26. 2450. 72.5 6.1 7.8 6.2 .4 86.6 1.3 1.0 . 2 400 5 .0 32. 2300. 73.5 6.1 9.3 7.8 .5 83.3 1.6 1 .3 .3 i 40 05 .5 40. 2350. 73.0 6.1 8.3 7.5 1.5 83.7 2.2 1.2 .9 400 6 .0 42. 2600. 113 ... 0 6.1 9.0 3.4 2.7 85.9 2.3 .5 1.7 400 6 .5 60. 2600. 72.0 6.1 6.6 4.5 4.5 85.3 3.6 .7 2.8 4007 ._0 e~ . 2100, 11.5 6.1 5. /t 4.5 7.1 84. 0 5.2 .7 4.5 4007.5 60. 2800. 72.5 6.1 7.9 2.7 4.9 85.5 3.5 .4 3.1 I 400 8 .0 40. 3050. 71.0 6.1 5.4 2.3 3.1 90.3 2.3 .3 1.9 ,

400 8.5 60. 3300. 69.5 6.1 2.2 2.4 5.4 91.0 3.8 .4 3.4 4009.0 110. 3700. 70.0 6.1 2.8 .9 11.0 86 .3 7.1 • 1 6.9 4009.5 200. 4100. 71.0 6.1 3.6 - . 2 21.1 76.4 13.2 0. 0 13.3

- 4010.0 27Q. 4050. 71! 5 6·1 3.5 -. 1 2 8 .4 68.9 17·8 0. 0 17.9 4 010.5 340. 3750. 72 . 0 6.1 3.', .5 35. 1 60.9 22.5 0.0 22.5 4011.0 300. 3650. 72.5 6.1 5 . 0 0.0 31 . 4 64.2 19.7 0.0 19.8 4011.5 280. 3700. 73.0 6.1 6.3 -.6 29.4 65.6 18.4 - . 1 18.5 4012.0 335. 3950. 13.0 6.1 5.6 -.9 35.3 60.6 22.0 -. 1 22.2 4012.5 370. 4000. 73.0 6.1. 5.0 -.7 39.9 56.3 25.0 - .1 25.1 4013 _.0 195,' HOQ, n.5 6-1 5.5 - 1. 1 43.3 52.6 27 .1 -.1 27.3 4013.5 360. 4050. 14.0 6.1 7. 2 -1.8 38.7 56.4 24 . 0 .3 24.4 4014.0 325. 3800.- 73.5 6. 1 6 . 7 -1 .1 34.2 60.8 21.3 -.1 21.5 4014 . 5 280. 3300. 73.0 6.1 6.1 .6 29.0 64.8 18.4 .1 18.3 401 5. 0 23 5. 3300 . 73.0 6.1 6.8 .3 24.4 69.2 15.4 0.0 15.3 401 5.5 270 . 3 900 . 73.0 6.1 6.6 -1.3 28.5 . 66.9 17.7 -.2 17.9 401 6. 0_ <-20 . 415 0 . 72.0 6.1 5.3 -1.0 23.3 13.2 14 . 5 -.1 14.7 _ . 4016. 5 170 . 3950. 71.0 6.1 4.0 -.2 17 .9 79.2 11.2 0.0 11.3 4017 .0 122 . 3650. 71.0 6.1 4.6 .2 12.4 83.7 7.8 0.0 7. 8 4017. 5 la'i. 3/,6 0 . 70.5 6 . 1 2.5 1.7 19.0 77 . 6 12.2 .2 12.0 401 8 .0 70. 3500. 70.5 6.1 4.3 .7 6.7 89 .3 4. 4 .1 4.2 401 8. 5 6 2. 3550. 70. 5 6.1 4.4 .5 5.9 90.1 3. 8 0.0 3.7 401 9.9 _ _ eo . 3 160 , 70.5 6.1 3.9 · 2.4 1.4 87.4 5.0 .4 4.6 401 9 . 5 140 . 3100. 70.5 6.1 2.9 3.2 13.9 80.9 9.3 .5 8.7 40 20 .0 17 8. 3100. 72.0 6.1 5.4 2.0 18 .1 75.3 11.7 .3 1l.4 ... ~ ... ~ " , ..,...,,,,, 7? < ~ -, ,." 1 • 3 23.0 70.6 14.7 .2 . 14 .5

Page 18: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

1B14 GENERAL PURPOSE CARD PUNCHING FORM PUNCHING INSTR UCTIONS

JOB SOC POTASH Loo ANALYSI S WRITTEN AS: 20 0Rl-\.jT (F . 1 , (f 4 . ~).2 F4 . ).F 3 1)

BY DATE PUNCH AS : Sam

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Page 19: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

IBM 1

FORTRAN C0tJING FORM

f ..... Oa.-llF·.

P!,II'ICl'li"g Instructions Page 1 ,I 4 Program SOC Potash Log Analys is Program Grooh;c Cord Form" • Ident ification

Programmer W.B. Anderson lDote Puncn 1 1 , " "

C fOil (OMMfNT

ts,,,nM!NI i NUMBER ~ FORTRAN STATEMENT , . , , ,

" " " " J<) " " ., '" " '" " " " 1/ ""- oJ''' "M,n r (a o'~ ,

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I I 7 ~=O.(l '--~

I • Y , O. 0 , , . I, 0 ",0.,0 , , .. A standard card fo rm, IBM c lcc lJ'o 888IS~. is ava.i1 ... b l ... for punchJng solu'cc st.lh:m",llts r .... ,nI this fo rn'"

Page 20: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

IBM IBM I FORTRAN CulliNG FORM

,_ JCl&- l Jn ··

PunChing InS TruC Tions Page 1 01 4

Program soc Potash Log Analvsis 1 Programmer W.B. Anderson

I , I 1) eo

Id ent if icotion Program SOC Potash Log Analysis Program G' OOh,c.

Programmer Dot e Punch W.B. Anderson

• Cord Form ..

~ , fOR C~""'MfNT

S',6.HMENI C NUMBU ~ , , , 7 " " "

F C fOR C~""'M (NT

, STAf[ MH. ' ~

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., ., " " 00 " 10 n

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IL.9. tz.,o . o -'- -'-. form, IBM e l cc lro 88 815~ , is :lv ,IlJ~b l c for l'unChJllY soute.:: Sl.lI"nU;1I1$ rroll1 Lhis fo rm .

Page 21: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

IBM f ..... ,a- /'T/I_.

FORTRAN CODING FORM Pl.lncflinq InstruClions Poqe 3 01 4

Proqfom SOC Potash Log Analysis Program Grophic Cord Form tI • Identification

P,oq,ommer W.B. Anderson IDoie PunCh 1 , , I , , , , I " '0

c ~o~ COMMENT

i S'A!EM[NT i NUM8H ~ FORTRAN STATEMENT , , , , .. "

,. "

,. " " " 50 " 00 " 10 11

I~I IF(aRC -8(,:1» 4 , ~ , I

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47 ()~ 1,(, I Ii> I , , , 14B TF.f i,Nt!. - .f. (,K.l . ), 1, 0 ,9, . 7, , , I

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bJ R~ r~ tv"". 01 ,Bo .. B.4,. R4 . . I .... I ,', , . • • • 1 I I , , , I , I •••• . * Astanda. lUd form, iBM elec:ro 888157, is available fo r-~uochl~ source statcm... .l from thIs form .

Page 22: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

IBM F ..... ~2 .. 7311_.

FORTRAN CODING FORM PUI"ICl'iing Inslruclions Page 4 ,I 4

Program SOC Potash Log Analysis Program Graphic Corel Form'- • Identification

Programmer W. B. Anderson

IOoie PunCh I , , J , , • , I

" " ~ C fOR C~MMENT

sTATEMENT c NUMIU ~ FORTRAN STATEMENT

C fOR COMMENT

, , 6 , " " '" " ,. " .0 " " " 60 " " "

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3 k! J -r.J I'" , 114- {!4 Iv j("";. )( V d. •. _ 0 . 0 6 ,l( z

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I' ' I I I , , I ' .. I ' . . '" A standa • .s'card lorm, mM electro 888157, is ava..ihble for puochio9 source stah:n,..:nis (rom this fo rm .

Page 23: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

soc POTASH lOG A~'"YSIS

- ------PORQUP!NE PRIME lMPERIAL (2-6-27-25W2 .

DEPTH GR I'l~ . SL . HS ' INSOL CARN SYLV ·. SALT ' KOT KOC KOS ·

.' 4000.0 '22. ',2,'300 .. '64~5 6. 1 ,.9.1 ~6"3 .. :'1.2 :, 95.0 ! 1.9 2~7 .... '7 4000.5 30,' 1'600 0 113.0 6.1 5,.<' '24.9 ! :'3.9 . 74.1 1.7 !>.2 -2.'4 4001;0 __ 26" 1650. (76.·5 6.1 13.0 19.9 -3.6 71.4 1.0 3.3 -2.2 4001 ~ 5 20. 1·800., 117.0 6;) 14 • . 8 15.5 , -3.2 73.7 .5 2.6 2.0 4002.0 20.' 2250. ":74.5 6 •. 1 11.'4 7"6 -.8 82.8 .7 1.2 -.' 4002.5 18. 2800"'_:71.5 6"1 I 6 '.5 3.3 .4 ' 90.8 .8 .5 .2 4003 .. 0 :16~ 2800 .. al.S 6.1 6.5 '3.3 .2 . 91.0 . .7 '.5 .1 4003.5 20 ~ 2650 ~ .72.0 6'.1 7.3 3.9 .4 ' 89.4 . .9 .6 .2 4004.0 22' 2550 , :71.5 6 ; 1 6.1 5.4 .3 89.2 ' 1.1 .9 .2 4004.5 26. 2450. :72.5 6 ; 1 . 7.8 6.2 .4 , 86.6 1.3 1.0 .2 4005.0 320 2300 • . , <73;5 6.1 9.3 7.8 .5 83.3 1.6 J.3 .3 4006.5 , 40. 2350 ; J,;73.0 6.1 8.3 7.5 1.5 _. _ 83.7 2.2 1.2 .9 4006.0 42 J.! 2600 j; a3.0 6. 1 9.0 .3.4 2.7 ; 85.9 2.3 -.5 1.7 4006.5 60. _ 2600. 72.0 6.1 6.6 4.5 4.5 ' 85.3 3.6 . • 7 2.8

_ !,,oJl.1.0 84 • . 2700 " 71:5 6·. L 5.', 4.5 7.1 ' 84.0 5.2 .7 4.5 4007.5 60 . 2 800. 12.5 6.1 7.9 2.7 .. 4.9 85.5 3.5 .4 3.1 400'8.0 40 " 3050 . ·71.0 6.1 5.4 2.3 3.1 90.3 2.3 .3 1.9 4008.5 60. 3300; 69.5 6.1 2.2 2.4 5.4_'_. 91.0 _~ 3.8 .4 3 '.4 4009;0 110' 3700; 110.0 6.1 2.8 ~9 11.0 86.3 7.1 .1 6.9 4009.5 2.00;.4100 • . :71.0 6.1 3.6 ' . -.2 21.1 . , 76.4 . 13.2 0 .0 . 13.3

_40I,O.0_ 2.1lL" 405Q • . 1105 6.1 '6.5 -.1 ' 28.4 , 68.9 17.8 0.0 17.9 4010.5 340 < 3750 . :72.0 6.1 .1 "3.4 .5 35.7 . 60.9 22.5 0.0 22.5 ~01J..0 300. 3650. 72:5 6.1 5.0 0.0 31.4 , 64.2 19.7 , 0.0 19.8 4011.5 280~ 370 0 . ~3.0 6.1 6.3 -.6 29.4 65.6 18.4 -.1 18.5 4012. C 335 ., 3950.' 113.0 6.1 5.6 -.9 35.3 60.6 22.0 . . - '.1 22.2 4012.5 370. 4000. 73.0 6.1 5.0 . -.7 39.9 56.3 25.0 . -.1 25.1 40 .. 1.3 • 0...332.L!t.l ,1l..0.. .73 • .:; __ 6'-'· .~1~-c5 ',-:5,---=-~1. L.....4 .. ~.~3'--"""5~2". 6>;--' ~2~7C'.~;1:--~. -........ ",1_·~2~7C'.",3,--_ 4013.5 360 . 4050 ~ d4.0 6.1 7.2 -1.8 38.7 56.4 24.0 -.3 24.4 4 C14.0 325. 3800;1 ./3.5 6 '.1 6.7 -1.1 34.2 60.8 21.3 -.1 21.5 4014.5 280,,· 3300. 73.0 6.1 1 6.1 .6 29.0 64.8 18.4 .1 18.3 l,015 . 0 235. 3300.' :73.0 6.1 6.8 .3 24.4 , 69.2 15.4 0.0 15.3 4015.5 270 . 3 9 00 .. 73.0 6.1 6.6 -1.3 28.5 6 6 .9 17.7 -.2 17.9

.....!>.0 .. 1 .. 6 . 0~0. 4150. 72.0 6.1 5.3 -l.O 2.3.3 13.2:--~1,!-4.L.5~_",-.... *I_~l~4c..~7 __ 401'6 .3 170. 3950" '71.0 6.1 4.0 -.2 17;9 79.2 11.2 0.0 11.3 4017 .1 1220 3650. :71.0 6.1 4.6 .2 12.4 83.7 7.8 0.0 7.8 4017.5 184.' 3460; 70.5 6.1 2.5 1.7 ~ 19.0 '-.77.6 _ ,_ 12.2 __ . • 2. 12.0 4018. 0 70. 3500" 70.5 6.1 4.3 ~7 , 6.7 , 89.3 4.4 '.1 4.2 4018.5 62. 3550 0 ~0 . 5 6.1 4.4 . .5 5.9 90.1 , 3.8 o ~o 3.7

_ 4,O,l9.0 __ 8 .. 0,-,.~.-!3~1 ,!6 ,!0 ... --:7~0~',-:5,---,!6",.~I _ _ 3:'c.",9~_~2c",=4,---:-~7".4~.~8~7C",=4,---,-. ::o5"",!0 __ -,.",·4o--· _,,4 .... ~6 __ 4019.5 .140. ·3100 . 70.5 6.1 2.9 3.2 13.9 80 .• 9 9.3 , .5 8.7 4020.0 ~78; '3100. 72.0 6.1 ' 5.4 2.0 18.1 ' 75.3 11.7 ~3 11.4 4020.5 224 0 3200. ~2.5 6.1 5.8 ~.3 23.0 . 70.6 14.7 .2 14.5

I

Page 24: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

,4021.0 320. 3670. 72.5 6.1 4.7 .1 33.5 62.2 21.1 0.0 21.1 4021.5 390. ,900. 13.5 6.,1 5.6 -.8 42.6 53.1 26.6 -.1, 26.8 4022.0 410. 3950. 73.5 6.1 5.2 -.7 45.3 50.6 28.4 -.1 28.5

_ ---.040_2,2,. ,5_ 38°"-3650-'-7,3.5 6 .1 5.6 -.2 41.1 53.9 25.8c-~0>c,",0~~2~5".~9,-4023.0 300;' 3300; 73.0 6.1 5.8 .8 31.1 62.8 19.7 ,'.1 19.6 4023.5 100; 3100. 72.5 6.1 7.7 .9 9.5 82.8 6.2 ,I 6.0 4024.0 90. 3500. 71.0 6.1 5.0 .4 8.9 S6.7 5.6 0.0 5~6

',024;5 98'. 3800;' 70.0 6.1 3.0 .6 9.8 87.6 6.3 '.1 6.2 , 4025;0 108; 420D; 70.0 6.1 3.0 0;0 11.0 87.1 6.9 0.0 6.S

_ --.;40,25.5 68< 4350. 70.0 6.1 3.3 -.2 9.0 89.1 5.6 0.0 5.6 4026.0 70. '>160; 70.0 6.1 '-3.5 .2 7.1 90.8 4.4 0.0 4 ... 4026.5 60; 4100. 69.5 6.1 2.6 .2 6.0 92.3 3.8 0.0 3.7 4027.0 64, 4200, 69.5 6.1 2.6 .1 6.4 92.0 4.0 0.0 4.0 4027.5 100; 4300. 70.0 6.1 3.1 -.1 10.2 87.9 6.4 0.0 6.4 4028.0 1~4" 4150; ~O.O 6.1 2.3 ;3 15.2 83.1 9.6 0.0 9.5

__ 4028;5 __ 8.0,LJ,900~0 .• 5 6~1 4.3 -.2 8.1 89.0 5" 'C0:c-_-"0"",,;,0,-_,,,5''c'l~ 4029.0 48; 3300; 69.5 6.1 2.7 .7 , 4.6 93.1, 3.0 .1 2.9 4029.5 65; 3150; 69.5 6.1 2.0 3.3 5.7 90.0 , 4.1 .5 S.6 4030.0 100; 3100~ 70.5 6.1 3.5 2.9 '.4 85.2 6.4 ;4 5.9 4030.5 200. 3600. 72.5 6.1 6.5 -;4 20.9 73.9 13.1 0.0 13.2 4031;0 322, ' 4150: ~3.0 6.1 5.9 -1;3 34.0 62.0 21.2 -.2 21.4

_--,,' 40 31 ; 5 395.. 38.0 0 .'i.......l3~0 __ 6 .... '!1~...;4!--'.,,'4~_-"0-;,.'10_-'4~3~c.'-'1~~5~2:-'-.~9...,..._2~7f;.'-jl_, __ 0~.,-,0~~2~7c'.~2~ 4032,0 310~ 3400. 73;0 6.1 , 5.7 .3 32.3 62.2 ' 20.4 0.0 20.3 4032.5 225; 3150; 73.5 6.1 7.8 .6 23.1 69.1. 14.7 ,1 14.6 4033.0 280. 3700; ~4.0 &.1 8.4 -1.6 29.5 64.4 , 18.3 p.2 18.5 4033,5 420; 4300; 73.5 6.1 5.1 -1.0 46.7 49.6 29.2 - '.1 29.4 4034.0 470, 4430. 73.5 6.1 3.5 - .4 57.4 39.6 36.0 0.0 36.1

_~4"O,3,4i 5 '440, 4'150. '14.0 6.1-hl,-_-=lL.1"-~5"0,,.,,,2~~4~5L' 7~--,3~lw.",4,--_=-~.~2_--,3",1~.'C6,-4035.0 385,' 3860. ~4.0 6.1 6.7 -1.2 41.9 53.0 26.2 , -.2 26'.4 4035;5 355 ; 3900; 74.0 6.1 7.3 , -1.6 37.9 56.9 23.6 -.2 23.9 4036.0 342v 4100. 73.5 6.1 6.6 -1.5 36.2 59.3 22.5 -.2 22.8 4036,5 378< 4200. 73.0 6.1 4.8 -.8 41.0 55.4 , 25.7 -.1 25.8 4037.0 340; 3650; ~3.5 6.1 6.4 , -.5 35.7 59.0 22.4 0.0 22.5

__ 40,33, • .5--.2 5Jl.L..,3 2 0 0 • 73. 5 6~1 I 7 dc-_=-"" 6"-~2,-,6,-,.'-!.7,-~6~6~. 0~--,1~6~.~9'-_-"-:',,~1_-,1~6~.~8!-4038;0 262. 2840; , ,74.'0 6.1 7.9 2.4 26.5 63.7 17.1 .4 16.7 4038;5 370; 3200; 73,5 6.1 5.5 1.4 39.3 54.1 24.9 .2 24.7 4039;0 426; 3650; 73.5 6.1 4.7 .1 47.2 48.1 29.7 0.0 29.7 4039,5 430; 3400 ; '75.0 6.1 7.6 -.4 47.9 45.2 30.1 0.0 30.2 ' ,040 ,0 3~5, 3200,-, il6.0 6.1 10.2 -.6 42.8 48.0 26.8 , -.1 27.0 4,040-,,2...3112,<-3..!i.OQ. 16: 5 6.1 11.5 --=2.5 43.2 48.~2~~2~6,".-"8,-_~=-:,,,4=-~2:-!7C'.~2C'7 4041:0 345~ 3500: 75.0 6.1 9.~ -1.5 36.4 56.3 22.6 , -.2 22.9 4041,5 260~ 3450. 73.0 6.1 J 6 . 5 -.1 27.1 67.2 17.0 0.0' 17.r 4042;0 220:' 3300 '" 72.0 6.1 '" 4. 9 1.2 22.1 71.9 14.5 :2 14~3 4042.5 120: 3,150" 71.0 6'.1 ',.3 2.2 11.7 82.7 1.7 .3 7.3 4043:0 86: 3100~ 70 :5 6.1 I 3.7 2.8 7.~ 86.6 5.4 .4 5.0

__ 40,<3 . ...5 66.J._;\,36~0. 10.5 6.1 4.3 1.2 6.2-8..2..,~4,-_:!4~.!:-1 __ ~.~2:-_~3~.~9_ 4044.0 62. 3650. 10.0 6;1 i 3. 5 .7 '6.0 90.9 3.9 .1 3.1 4044.5 50: 3950~ 69.5 6.1 2.7 ' :3 4.9 93.2 3.1 0.0 3.1 40!t5:..0 · 50~ 4100. :69.0 _6-.1 -1 1.7 -.6 4.9- 93 .. 9 3.2 .1 3.1 4045.5 40. 3900'-' 6~.0 6.1 I 1. B .8 3.8 94.7 2.5 .1 ' 2.4 40',6.0 35: 3900. 69.0 6.1 1. 9 .8 3.3' ~5.2 2.2 ' .1 2.0

_ -,,-4,046. 5 _ _ 't0~3850<-"'p,9.5 __ i>.._L....-2.9, .5~_-,;3.8 _ _ 94.0 __ 2,. ,5 0.0 2.4 ',047.0 ,68. 4000. 69.0 6.1 1 1.5 .8 6.7 92.1 4.4 .1 4.2 4047:5 90. 42 00 . 69.5 6.1 2.2 .3 9.1 89.4 5.8 0.0 5.7 4048.0 70: 4020. 70.0 6.1 3.5 -.1 7.0 90.1 4.4 0.0 4.4

Page 25: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

40~S.5 80~ 3200 . 69.5 6.1 2.2 .~ 7.9 90.0 5.1 .1 5.0 40 49 . 0 92. 3710. 70.0 6.1 3.0 .8 9.1 88.1 5.9 .1 5.7 IIO~9 w5 76 w .!~ Ol;·O .: 71.0 6.1 5.5 -1.0 7.8 88 .. 9 4.7 - '.1 4.9 4050 •. 0 _ _ 4 3 -"-'~OO O. 70. 5 __ 6 • 1 ' •• 9 -.7 4. 8 __ 9 2 • .?;-_~2C",-;9;-_-;-;-",-;I<-_-;3p'''0;-_ 4050.5 30, 4040. 69.5 6.1 3.1 0.0 2.8 95.2 1.8 0.0 1.8 4051.0 23 . 3950; 7 0.0 6. 1 4.1 -.2 2.6 94.8 1.6 0.0 1.6 4051.5 3B. 4000. 69.5 6.1 2.9 .1 3.7 94.4 2.3 0.0 2.3 4052 .0 33. 3800. 69.0 6.1 1.8 1.1 3.5 94.7 2.4 .1 2.2 4052.5 62. 3500. 69.5 6.1 2.3 1.6 5.8 91.3 3.9 .2 3.6

_ 4053 •. 0_ 120 .• _ 3150.' 70. 5 6. 1_~~2 _ _ 2. 7 __ 11 .• _6 8 3 ~3;-_;-7f-.,,8'C-__ .,-4~_;-7f-.~3;-__ 4053.5 220. 3000. 74.0 6.1 a.3 1.0 22.4 68.4 14.3 .1 14.1 4054.0 240 , 2350 . 77.5 6.1 15.5 - 1 .0 24.5 6 1.7 15.3 -.1 15.4 4054 .5 200 . 2450. 76.0 6.1 12.3 4.1 19 .2 65 .0 12.8 .7 12.1 4055 .0 140~ 2000. 7 6 .0 6.1 11.7 12. 8 10. 6 65 .5 8.8 2.1 6.6 4C55 M5 72; 2050~ 83.0 6.1 27w4 4.4 4.1 64.9 3.3 .7 2.5

. 4056 . 0 _ _ 42 .• _290~U .5 6 .•. L .18 .6 __ -2. 8 3 ... 6 __ 81. 7 __ 1. 8: _ _ -;-c",;:4;-_~2,",.-;2c-_ 4056.5 32; 3650. 70.0 6.1 3.9 .5 2.8 93.9 1.9 0.0 1.8 4 05 7.0 26. 3150; 69.0 6.1 2.0 1.1 2.2 95.8 1.6 .2 1.4 4 057 .5 22 ~ 3950. 69.0 6.1 2.1 .6 1.9 96.5 1.3 .1 1.2 4058 . 0 20. 4100. 69.0 6 .1 2.2 .4 1.8 96.8 1.2 0.0 1.1 4058.5 22. 4000. 69.5 6.1 3.2 0.0 2.0 96.0 1.3 0.0 1.2 ' ,059 .0 __ 20_,,-4.100. 70.0 6.L-.', .3 -. 5 1 •. 9 __ 95.6 1.'-!1c-_-':0.0 r.2 4059 .5 I S; 4100. 70.0 6.1 4.3 -.5 1.7 95.8 .9 0.0 1.0 4 0~0 .0 20. 3900. 69.5 6.1 3.2 .2 1.7 96.0 1.1 0.0 l.r ~060.5 18. 3870 0 69.5 6.1 3.2 .3 1.5 96 .2 1.0 0.0 .9 4C5 1. 0 ! S ~ 3800. 69.5 6.1 3.2 . 5 1.5 96 .1 1.0 0.0 .9 406 1.5 20, 3800. 70.0 6.1 4.2 0.0 1.7 95. 3 1.1 0.0 1.1

-',062 .• 0_.22< 3.',)50 . ........l"" .'-0 ___ 6 .•. 1 4._2 -.3 2 .• 0 __ 9~ .... 3 _ _ 1 .... 2 0.0 1.3;-_ 4062.5 22. 3950. 70.0 6.1 4.2 .3 2 . 0 95.3 1.2 0.0 1. 3 4063 . 0 22. 4050. 69.0 6.1 2.2 .4 2.0 96.6 1.3 0.0 1.2 40&3.5 20. 4100 . 69.5 6 .1 3.2 0.0 1.8 96.2 1.1 0.0 1.1 4 064 _0 26~ 3950 . 69.5 6. 1 3.1 .1 2.4 95.5 1.5 0.0 1.5 4C64~5 30; 3350. 69 .5 6.1 2.7 1.9 2. 4 94.1 1.8 .3 1.5 ',065 .0 __ 36' 300.0. 70.5 6.1 4.4 3 .• _1 __ 2.6 9) .1 2.1 .5 1. 6 4065 .5 70. 3000. 73.0 6.1 9 . 0 . 9 6.3 84.8 4.1 .1 3.9 4066.0 114~ 3450; 71.5 6.1 5~7 _2 11. 4 83.7 7 .2 0.0 7.1 40 66 .5 200; 3900. 70.5 6.1 2. 5 .5 21.0 76.8 13.3 .1 13.2 4 067.0 316 ' 3850. 72. 0 6.1 3. 8 .1 33 . 2 63.5 20 .9 0.0 20.9 4067 .5 3~O_ 3~50. 73.5 6 .1 6 ~ 6 -1.4 35 . 9 59.5 22 . 4 -.2 22 . 6 ',0&o.0...320 .-".l60.~3 •. 5 __ 6~L...6.9 __ -1.a 33.8 __ 6.1.6 21.0 -.3 21.3 4068 .5 3 10 . 4200. 72.5 6.1 5.0 -.9 32.7 63 .8 20.4 .1 20.6 4069 . 0 340 . 4230 . 73.0 6. 1 5.6 -1.2 36.0 60.2 22.4 -.2 22.6 4059.5 400 ; 425 0 ~ 73.5 6.1 5.4 -1.1 44.0 52.1 27.5 -.2 27.7 4070.0 470. 4300. 76.0 6.1 8 .7 - 2.7 57.6 36.6 35.8 -,4 36.3 4 070 .5 510. 430 0 . 75.5 6.1 5.1 - 1.0 7 5.2 20.5 47.1 -. 1 47.4

-',0 71~0_460' 4.2;;9--,,-1.9 .5 6.1 10 .... 1 - ·3_._3 __ 5, ..... 8 38.6 33.9 -.5 34.5 4071.5 395. '.040. '76.0 6.1 10.7 3.4 43.5 49.6 26.8 -.5 27.4 4072 .0 300. 4150. 74.5 6.1 9.3 -2.8 31.8 62.4 19.5 -.4 20.0 4072.5 240 ; 4100. 72.5 6.1 6.1 -1.3 25.4 70.7 15.7 -. 2 16.0 ~013 . 0 200. 4000. 71.5 6.1 4.6 -.6 21.1 75.7 13.2 -.1 13.3 4073.5 230: 4000. 71.5 6 .1 4.1 -.3 24.3 72.8 15.2 0.0 15.3 4074~ 0_ 2~O ._4000 ._7.3 ... 0 __ 6., I __ 6.3 - 1.4_.30.6_.65.1 __ 19 __ .0 -.,2 __ 19.3 _ _ ~,07~' .. 5 320 ... 3 950 . 73.5 6.1 6.9 -1.5 33.8 61.5 21.0 -.2 21.3 ~~75 . 0 2S0~ 390 0 . 72.5 6.1 5.4 -.7 29.5 66 .5 18.4 -.1 18.6 ~C75 .5 225 . 3600. 72.0 6.1 5.1 -. 3 23.6 72 . 4 14.8 0.0 14.9

Page 26: Camma Ray Log - spec2000.net · Camma Ray Log For 1. B.M. LB.H. Neutron Log Sonic Log Density Log FORTRAN II ... Gamma Ray reading from log Gamma Ray reading corrected for hole size

4076,0 235. 3650 .. ,72.0 6.1 4.9 .1 2',.6 71.1 15.5 0.0 15.5 4076.5 2 L.O ;- 3550.: 73.0 6.1 I 6.9 -.5 25.1 69.3 15.7 0.0 15.8 4077.0 260. 3550. 73.5 6.1 I 7.6 -.8 27.2 66.7 17.0 -.1 17 .1

__ 407].~240' 3640. 73.5 6.1 7.9 - 1.2 25.2 98• 8 15.6 -.2 . 15.9 4078.0 192. 3700. 12.5 6.1 I 6.6 -.8 20.2 74.8 12.6 .1 12.7 4078;.5 210 . 3850. 72.0 6.1 5.4 -.6 22.1 73.9 13. S -.1 13.9 4079.0 238. 3800. ,72.5 6.1 6.0 -.7 25.0 70.5 15.6 - .1 ' 15.8 4079.5 200. 3900. 72.0 6.1 ' 5.6 - .8 21.1 75.0 13.1 -.1 . 13.3 4080.0 235. 4050 '. 72,.0 6.1 , 5.1 -.8 24.8 ' 71.7 15.5 - .1 15.6 4080.0~,:<"0-'--"-200 . 7~,5 6,1 4,9 -~8 33.8 62.9 21.1 -.1 . 21.2 4081;0 390 ~; 3900, 73.5 6.1 5.6 - .8 42.6 53.1 26.6 .1 ' 26.0 4081.5 320. 3400. 74.5 6.1 8.7 -.9 33.5 59.4 20.9 -.1 21.1 4082.0 255:. . 3100;. 74.0 6.1 8.3 .6 26.2 65.4 16.6 .1 16.5 4002.5 200 ~' 2650 . 75.5 6.1 11.8 1.8 19.9 67.2 12.8 .3 12.5 40 83:; 0 200. 2800. 77.5 6.1 ,16. 1 -1.0 20.3 65.4 12.6 -.1 12.8 40 8 3.0_240.L.?,~00' 78.0 6.1 17.0 -4.3 ~5.3 62.8 15.2 -.7 15.9 4084.0 255. 3900.' 76.0 6.1 ' 13.0 - 4.2 27.2 , 64.8 16.4 -.7 17.1 4084.5 , 240 " 3890, 74.~ 6.1 9.1 -2.4 , 25.4 68.7 15.6 -.4 , 16.0 4085.0 250.' 3550. 12.5 6.1 5.7 0.0 , 26.1 68.9 16.4 0.0 16.4 4085.5 210; 2600 . 74.0 6.1 8.4 3.7 20.7 67.8 13.6 .6 13.0 40E6.0 182.' 2630.' 78.0 6.1 17.2 -.4 18.2 65.9 11.4 0.0 11.4 40 8 6.5 230. 3250. 79.0 6.1 !9.2 -5.0 24.3 62.4 14.4 -.8 15.3 4087.0 264 < 3750.' 74.5 6.1 9.7 2.3 27.9 65.5 17.1 .3 17.5 4087.5 272 . 3730. 12.5 6.1 5.4 -.3 28.5 67.0 17.9 0.0 18.0 4088.0 224. 3750 .. 72.0 6.1 5.1 -.2 23.5 72.4 14.7 , 0.0 14.8 4038.5 170. 3 800. 71.0 6.1. 3.9 .1 17.8 79.0 11.2 0.0 11.2 4089,0 165.' 38500 70.5 6.1 3.0 .4 17.3 80.1 11.0 0.0 10.9

__ 4,OlJ.9,.~_200 • ...2L6..Q. 71~O 6.1 3._4 .5 20.9 75.9 13.2 0.0 1.3.2 4090,0 300. 4200. 73.0 6.1 6.2 -1.5 31.7 64.2 19.7 - .. '2 . '20.0 4090.5 430:.' 4200. 76.0 6.1 10.0 -3.2 4 8.5 45.1 29.9 -.5 30.5 409:1.0 435,' 4210. 76.0 6.1 9 . 9 -3.1 49.4 44.2 30.5 -.5 ,31.1 4091.5 400; L}lSa ... '75.0 6.1 8.5 , -2.5 4'1.1 50.2 27.3 - .4 27.8 4092 .. 0 360 . ';'050.' 73.5 6.1 6.2 -1.3 38.6 57.0 24.1 -.2 Q4.3 409_2 .. ,L.3~j)j'-!tPOO " 12.Q 6.1 3. 8~33,7 63.2 21.1 0.0 21.2 4093.0 250 . 3900. 72.0 6.1 4. 8 -.4 26.3 70.1 16.5 0.0 , 16.6 4093.5 220;: 3900. 72.0 6.1 5.3 -.6 23.2 73.0 14.5 - .f 14.6 4094.0 235:: 4000 '; 11.5 6.1 4 .. 0 -.3 24.8 72.3 15.5 0.0 15.6 l.-O<)4 .. 5 300, 4050, 73 .. 0 6.1 ~ .. 2 -1.3 31.7 64.1 19.7 - .. 2 . 19.9 409 5.0 3 90. 4250. 74.0 6.1 6.7 -1. "I 42.7 52.7 26.6 -.2 26.9

__ 49,9 5~5 430J,:-.-ll.Q,O • H.~ 6.~~3 1,6 41.5 44,8 20.1 .z ~9.9 4096.0 360 . 3200;. 74.0 6.1 6. 8 .8 38.0 54.8 24.0 .1 • 23:.9 40%.5 220 , 2850. 77.0 6.1 14.8 -.7 22.4 64.3 1't .. O - ,.1 14.1 4097.0 SO:. 3040. ,76.0 6.1 15.1 -2.0 7.7 80.4 4.5 -.3 4.8 4097;.5 3? ., .. 3540. 69.0 6.1 1.8 1.8 2.7 94.9 , 2.0 .3 1.7 40 98.0 28~ 3550. 67.5 6;1 -1.2 3.2 2.2 97.1 1.9 .5 1.3

_ _ 4,0,g8";; 20-'-.3650, 1Q.0 6.1 !t. 1 .!t 1. 6 25.1 1.1 0,0 1 JI 0 4099.0 18 ; 3650. '10.5 6.1 5.2 0.0 f.4 94.6 .9 0.0 .9 4099.5 16. 3800; , :70.5 6.1 5.3 - .4 t.3 95.1 .8 0.0 .8 4100:;0 16 ~ 3650. 70;5 6 .• 1 5.2 0.0 1.2 94.8 .8 0.0 __ .8 __