Difference between revisions of "Benchmarking: Ball Mill Power Draw Models"

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(Created page with "Category:Bibliography Category:Models Category:Benchmarking ==Benchmarking: Ball Mill Power Draw - Fimiston== * ''Nelson, M; Valery, W; Morrell, S'', '''Performanc...")
 
(Benchmarking: Ball Mill Power Draw - Fimiston)
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[[Benchmarking: Fimiston Ball Mills|See details of benchmarking]]
 
[[Benchmarking: Fimiston Ball Mills|See details of benchmarking]]
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==Benchmarking: Ball Mill Power Draw - Meadowbank==
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* ''Muteb, P. & Allaire, J.'', '''Meadowbank Mine Process Plant Throughput Increase''', Proceedings of the Canadian Mineral Processors Annual General Meeting, Ottawa, Canada, January 2013.
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The ball mill design given as:
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* Diameter inside shell: 18 ft
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* Length (assumed to be flange-to-flange length): 29 ft
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* Effective grinding length: 28.5 ft (from block flow diagram)
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* Motor size: horsepower ( kW)
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* Overflow mill assumed
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The operating conditions of the May 2012 survey, including the pre-crushing circuit given as:
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* Mill speed 14.19 rpm (75% critical)
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* Volumetric filling 30.6% v/v
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* Ball charge 30.6% v/v
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* Ore density 2.93 kg/L
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* Grindability: A&times;b 38.6; Wi<sub>BM</sub> 10.9 kWh/t
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Liners assumed to be an effective thickness of 3 inches. DCS power is assumed to be indicated (mill power measurements &times; 0.985 pinion &times; 0.96 motor eff equals power "at mill shell"). Model power measurements are shown "at DCS".
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{| class="wikitable" border="1"
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|-
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!
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! DCS Power, kW
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! Mill filling
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! Morrell Model, kW
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! Loveday/Barratt model, kW
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! Austin model, kW
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|-
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| May 2012
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| 4,341
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| 30.6% v/v
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| (-3.3%)
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| (+7.3%)
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| (-3.0%)
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|}

Revision as of 00:04, 27 January 2013

Benchmarking: Ball Mill Power Draw - Fimiston

  • Nelson, M; Valery, W; Morrell, S, Performance Characteristics and Optimisation of the Fimiston (KCGM) SAG Mill Circuit, Page 233 - 248, SAG 1996 Conference, Vancouver, Canada.
Survey Survey Power,
kW at input
Mill speed,
%critical
Total load,
%v/v
Pulp %solids,
w/w
Morrell SAG Model,
kW at input / shell
Nordberg Model,
kW at input / shell
Survey 1 3,864 68.3 38.7 72.0 3,933 / 3,776 3,592 / 3,345
  • Morrell model predicts 2% high
  • Nordberg model predicts 7% low

See details of benchmarking

Benchmarking: Ball Mill Power Draw - Meadowbank

  • Muteb, P. & Allaire, J., Meadowbank Mine Process Plant Throughput Increase, Proceedings of the Canadian Mineral Processors Annual General Meeting, Ottawa, Canada, January 2013.

The ball mill design given as:

  • Diameter inside shell: 18 ft
  • Length (assumed to be flange-to-flange length): 29 ft
  • Effective grinding length: 28.5 ft (from block flow diagram)
  • Motor size: horsepower ( kW)
  • Overflow mill assumed

The operating conditions of the May 2012 survey, including the pre-crushing circuit given as:

  • Mill speed 14.19 rpm (75% critical)
  • Volumetric filling 30.6% v/v
  • Ball charge 30.6% v/v
  • Ore density 2.93 kg/L
  • Grindability: A×b 38.6; WiBM 10.9 kWh/t

Liners assumed to be an effective thickness of 3 inches. DCS power is assumed to be indicated (mill power measurements × 0.985 pinion × 0.96 motor eff equals power "at mill shell"). Model power measurements are shown "at DCS".

DCS Power, kW Mill filling Morrell Model, kW Loveday/Barratt model, kW Austin model, kW
May 2012 4,341 30.6% v/v (-3.3%) (+7.3%) (-3.0%)