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INTRODUCTION TO THE HAC
DEMONSTRATOR PROJECT
29th January, 2015
www.mirarco.org
29 January, 2015
Dean Millar
MIRARCO Research Chair of Energy in Mining,
Bharti School of Engineering,
Laurentian University, Sudbury, Ontario
UDMN HAC Project Team
Tom CliffordRiventa Canada Inc.Roto-dynamic efficiency
Alex HutchisonMIRARCOGas mixing /separation
Dr Dean MillarMIRARCO / LUProject Leader
Valeria PavesePolitecnico di Torino, Italy, HAC Efficiency
Dr Caterina NoulaElectrale Innovation Ltd.Analytical Chemist
Al AckermanCEMI / UDMNTheme 3 Leader
Maxine MyreMIRARCOCommunications
www.mirarco.org
Steve YoungMIRARCOHydrodynamics
David VitoneCEMI / UDMNProject Manager
Sujit SenguptaAdmira DHES LtdCryogenics /Electrical
Javier Rico-PaezUQATJet Pump Cooling
Project Objectives – to be “1st to be 19th”
• Lab scale HAC & Demonstrator scale HAC – Year 1– Cheap compressed air for mining operations
– Obtain OPA certification as energy efficient
– Prove applicability for deep mine cooling
– M&V activities at demonstration scale
– Establish / prove supply chain
• Marketing and Commercialization – Year 2, onwards– Pneumatic power for mines
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– Pneumatic power for mines
– Air separation systems
– Advanced products
• Innovation program – Year 2 & 3– Compressed air yield enhancement
– Carbon capture
– Refrigerant compression
– Tower block air conditioning
– Autoclave mineral processing
Schedule
& Budget
Q3 - 2014 Q4 - 2014 Q1 - 2015 Q2 - 2015 Q3 - 2015 Q4
J A S O N D J F M A M J J A S O N
Lab scale prototype - "Baby HAC" design
Baby HAC assembled
Conceptual designDetailed engineering design "DE HAC"
Procurement of instrumentation & control equipment
Mass spectrometer
SCADA
PumpsVFD
Inverters
Motors
Flow meters / controllers
PLC Valves
Air power instruments
Thermodynamic instruments
Pump torque instruments
Electrical power instrumentsLevel sensors
Starter panels
Permitting - Building / Commitment / Certification$850k
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Permitting - Building / Commitment / Certification
DE HAC Component fabrication
Piping fabricationSub-structure fab / assembly
Super-structure fab / assembly
Taylor air-water mixing head
Cyclone separator
DE HAC installationMobilization
Electrical
Foundation slab
Sub-structure installation
Super-structure erectionConnection to water / drainage
Building envelope
Demobilization
Commissioning
Mechnical / electrical systemsInstrumentation installation
Commissioning trials
$850k
Why are you here?
• Project procurement ‘flurry’ between May & Oct 2015
• Not particularly specialist parts
• Project brief to stimulate business activity
• Need to establish and prove HAC supply chain
• Preference to procure locally
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• Preference to procure locally
• We undertake to ensure that general contractor will inform you of procurement processes, for items on which you have expressed interest in supplying
• Ultimately, procurement decisions will have to be based on lowest cost meeting specification
HYDRAULIC AIR COMPRESSOR
FUNCTIONAL DESCRIPTION
www.mirarco.org
Dean Millar
MIRARCO Research Chair of Energy in Mining,
Bharti School of Engineering,
Laurentian University, Sudbury, Ontario
The Ragged Chutes HAC installed at Cobalt, ON was designed by
Charles Havelock Taylor
www.mirarco.org
Source: virtualmuseum.ca-The Cobalt Adventure
Schulze, L.E., 1954. Hydraulic air compressors. Bureau of Mines Information Circular 7683. Pittsberg, Pa, US Dept of Interior
Ragged Chutes, the largest ever HAC, produced 40,000 cfm @
120 psi(g) (22.7 kg/s @ 8.3 bar(g)) but is now derelict
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The Atlas Copco GT153 installed in a Chinese steel mill produces
322,500 Sm3/h air at 6 bar(a) (190,000 cfm @ 87 psi(a) )
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Source: http://www.atlascopco-gap.com/fileadmin/download/magazine/109.pdf
Cost of capital Electricity price (2013 CAD/MWh)
(%) 55 65 70 80
2 3.984 4.596 4.902 5.514
5 4.108 4.726 5.035 5.653
10 4.331 4.958 5.271 5.89815 4.574 5.210 5.527 6.162
20 4.839 5.482 5.803 6.445
Compressed air price ($/tonne) if built in Sudbury
In the Clausthal mine
HAC was installed in an
existing shaft system
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Source: Schulze, L.E., 1954.
The HAC installed within Peterborough
Lift Lock is the template for DE HAC Source: Schulze, L.E., 1954.
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There are 4 main components of a HAC:
water-air intake, down-comer shaft, separation device, riser shaft
Mixing process
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Compression
Separation
Potential energy
recovery
A modern day description of how Taylor’s 20th century intake
head works may defy the best that 21st century CFD has to offer
www.mirarco.org Source: Schulze, L.E., 1954.
Jet pump analysis
Two-phase flow
Mixing of air & water phases
Control regime
THEORETICAL CHALLENGES:
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Two-phase flow
Differential pressureSolubility of gases
Gas-liquidseparation
For more information:
Dean Millar
dmillar@mirarco.org
www.mirarco.org
Millar, D.L., 2014. A review of thecase for modern-day adoption ofhydraulic air compressors. AppliedThermal Engineering, Vol. 69, pp 55-77
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