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Model Input
125 O/F Size at 60% passing
100
MTPH Solids (um)
MTPH Water
O/F %Solids
54
MTPH Slurry
U/F %Solids
80
% solids, wt
S.G. of solids
2.65
% solids, vol
Approx Circulating Load
300
(%)
S.G. slurry
82.7
Slurry Flow (l/s) USGPM slurry
Units Conversion psi
12.0
Kpa
82.7
Feed particle size (µm) %Recovery of this Size to U/F
80
D50C application from O/F 60% passing manual input (any value)
99%
(Corrected)
In this model, C1, C2, C3 are generate
We can also get C1, C C1, Correction for feed density C2, Correction for influence of pressure drop C3, Correction for sp gr solids D50C base (µm) Cyclone diameter (inch) Area of inlet nozzel (inch2) Size of vortex finder (inch) Actual throughput of a single cyclone of this size (USGPM) Number of cyclone units required Underflow per unit (USGPM) Size of apex (inch)
100%
Cyclone Classification Curves Particle
X
Reduced
90%
size, µm
recovery
80%
(corrected)
(corrected)
70%
200
60% 50% %Recovery to Underflow
5.4
100%
90% 80% 70% 141
3.8
100%
100
2.7
100%
50% %Recovery to Underflow
71
1.9
97%
40%
50
1.3
80%
30%
35
0.9
45%
25
0.7
20%
18
0.5
10%
13
0.3
5%
60%
20% 10% 0% 1
9 2.1484903
10
0.2
100
3%
Feed Particle Size (microns)
Corrected
1000
Model Output STEP 1 material balance Overflow
Underflow
Feed
125
375
500
188
125
313
313
500
813
54
80
62
31
60
38
1.507
1.992
1.621
58
70
139
913
1105
2207
STEP 2 D50C application 208
(µm)
www.911metallurgist.com/blog
1, C2, C3 are generated from emperically We can also get C1, C2, C3 from graphs STEP 3 cyclone diameter 5.9
Graph 3
0.9
Graph 4
1.00
Graph 5
37 19.43 18.88 6.80 STEP 4 number of units required