Full text: Proceedings, XXth congress (Part 4)

  
  
  
  
International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XXXV, Part B4. Istanbul 2004 
The factor maps of this area is produced using fuzzy logic, 
index overlay and integrated methods in 16 different inference 
networks. Schematic inference network and  approprite 
operators for generating mineral potential map of porphyry 
copper mineral deposite of Rigan Bam is shown in figure 3 and 
table 2. 
  
  
HRT- 
Host rock type 
  
  
  
  
  
  
MPM- 
Mineral 
potential map 
HPZ- 
Heat produciing zone 
  
  
  
  
  
  
GPA- 
Geophysic anomaly 
senden 
  
  
  
  
  
  
  
  
  
  
  
HRT 
[CE Sli: 
Genlogy Mineral 
HPZ f" anomaly potential map 
  
  
75 
  
  
  
  
  
| 
  
  
GPA 
  
  
  
  
HE 
  
  
Figure 3: Schematic Inference Networks for generating 
mineral potential map of porphyry copper mineral deposit 
of Rigan Bam 
16 Mineral potential maps for porphyry copper mineral 
deposite of Rigan Bam are produced. In this stage, these 
maps with drilling results of porphyry copper mineral 
deposite of Rigan Bam have been Compared. The field 
works are illustrated in figure 4 which describes the 
results of drilling in Rigan Bam. Evaluation of the results 
of drilling and its comparision with the results of mineral 
potential map of Rigan Bam is shown in table 3 
Table 2: appropriate operators in 16 Inference Networks 
For Generating Map Mineral potential of porphyry 
copper mineral deposit of Rigan Bam 
  
  
  
  
  
  
  
  
  
  
  
  
  
  
  
  
  
  
  
Host Heat = ; 
Model rock produciing Geophysic | 
j anomaly 
type zone 
1:Index overlay | Index ov. Index ov. Index ov. 
2:Index overlay | Index ov. Index ov. Index ov. | 
3:Fuzzy logic F.A.S FO Y F.O.G , y=08 
4:Fuzzy logic | F-AS FOU Ÿ | FO.G , y=08 
5: Integrated Index ov. OR F.O.G,y=08 
6: Integrated F.A.S OR F.O.G , y=08 
7: Integrated Index ov. OR F.O.G , y=08 
8: Integrated F.A.S OR F.O.G , y=08 
9: Integrated Index ov. OR F.O.G , y=08 
10: Integrated F.A.S OR F.O.G , y=08 
11: Integrated | Index ov. OR F.O.G , y=08 
12: Integrated F.AS OR F.O.G , y=08 
13: Integrated | Index ov. OR F.O.G , 1-03 
14: Integrated F.A.S OR F.O.G , y=08 
15:Integrated | Index ov. OR F.O.G , y=08 
| 16: Integrated F.A.S OR F.O.G , y*038 
  
  
  
Model Geology Mineral potential map 
anomaly 
1:Index overlay - 
2:Index overlay Index overlay 
3:Fuzzy logic - 
4:Fuzzy logic F.O.G , y 20.9 
5: Integrated Index overlay 
6: Integrated Index overlay 
7: Integrated FOG , y 209 
8: Integrated FOG ,vy=09 
  
Index overlay 
Index overlay 
F.O.G ,y=085 
FO.G,y=03%5 
Index overlay 
Index overlay 
Index overlay 
Index overlay 
  
  
  
  
  
  
  
  
  
  
9: Integrated Index overlay FOG ,y=09 
10: Integrated Index overlay F.O.G , y=0. 
11: Integrated FOG, v=0. FOG, y=09 
  
FOG , y=09 
12: Integrated. | F.O.G , y - 0.9 
Index overlay 
13: Integrated - 
  
  
  
  
  
  
  
  
  
  
14: Integrated - Index overlay 
15: Integrated - FOG , y=09 
16: Integrated - FOG, yz09 
  
Cutotal(%) 
L| 
      
    
DEPTH (M) 
  
  
  
  
  
pm*s8 
"TELS 
Figure 4: Profile of variation copper percent in depth 
porphyry copper mineral deposit of Rigan Bam drillholle 
1106 
  
  
NO. 
DH 
  
n2 
  
  
FRE 
As c 
netw 
netw 
three 
drilli 
prodi 
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