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ARTIFICIAL-LIFT METHODS FOR OIL/GAS PRODUCTION
Instituto Superior Técnico – Lisboa 2014
João Ribeiro
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INTRODUCTION
Lifting methods are used to transport fluid from a point of highest
pressure to the point of lowest pressure
Instituto Superior Técnico 29/05/2014
Natural lift Artificial lift
Are divided into:
The natural elevation usually occurs at the
beginning of productive life of the reservoir Does not occur by natural processes
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NATURAL LIFT
FACTORS THAT AFFECTS PRODUCTION BY NATURAL LIFT:
Fluid properties
• Viscosity
• Density
Productivity index of the well
Skin factor
Stimulation techniques
Control of the pressure drop into the reservoir
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Are used wells low pressure
Increase prodution
Main Techniques
Gas-lift
– continuous (GLC)
– intermittent (GLI)
Electric Submersible pump (ESP)
Sucker rod pump
Progressing Cavity Pumps
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ARTIFICIAL LIFT METHODS
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Selecting an Artificial Lift Method – Reservoir and well characteristics
Gas/ liquid ratio: A high GLR generally lowers the efficiency of pump-assisted lift
Viscosity: High-viscosity fluids can cause difficulty
Formation volume: Reservoir volume determines how much total fluid must be lifted –
Production Rate
Well depth: The well depth dictates how much surface energy is needed
Well deviation: Highly deviated wells may limit applications on some lift methods
ARTIFICIAL LIFT METHODS
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ARTIFICIAL LIFT METHODS
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Principle
Injecting high pressure gas into the production column
1. Gas-lift
Gasify oil Reduces
pressure
gradient
Decrease the
pressure in the
production column
Increase
flow
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Continous gas-lift
Continuous gas injection
Intermittent Gas lift
Displacing liquid slugs with high-pressure
injection gás by well defined timings
• Controled Controlled at the surface
by controlling valve
If Productivity
index > 1,0
m3/day/Kgf/cm2
Se
lectio
n
No Yes
ARTIFICIAL LIFT METHODS
1. Gas-lift
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ARTIFICIAL LIFT METHODS
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Fonte: Adaptações de SILVA, 2002.
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1. Gas-lift
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Advantages:
• Can be used offshore and
onshore
• High sand content
• High ratio gas/oil
• Lowcost for deep wells
• Deviated wellbores;
• Most commonly method used
in the oil industry
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Disadvantages:
• The gas can not be corrosive
• Low distance between the well and
compressors
ARTIFICIAL LIFT METHODS
1. Gas-lift
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Source: Adapted from SILVA, 2002
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ARTIFICIAL LIFT METHODS
2. Electric submersible pump
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Advantages:
Low investment
High flow
High-temperature wells (above 180°C)
High-angle and horizontal wellbores
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Disadvantages:
• Does not applied for wells that
procuce sand;
• Low rate gas/oil
• It is not appropriate for wells that
produce H₂S;
• Changing production rates requires
either a pump change
ARTIFICIAL LIFT METHODS
2. Electric submersible pump
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ARTIFICIAL LIFT METHODS
3. Sucker rod pump
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Advantages:
Low operating cost
Used in well average production
or low production to High depth
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Disadvantages
Can not be used :
Highly deviated wells;
Offshore
Well low sand content
Wells low gas content
Low viscousity fluids
ARTIFICIAL LIFT METHODS
3. Sucker rod pump
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ARTIFICIAL LIFT METHODS
4. Progressive Cavity Pump
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Advantages:
High efficiency for
viscosity fluids
Abrasive fluids
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Disadvantages:
• Well – low depth;
• Not recomented for
• Deviated wells;
• Wells produce Sand;
• Low temperatures
ARTIFICIAL LIFT METHODS
4. Progressive Cavity Pump
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Top artificial lift methodns in Brazil
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Source: Adapted from PETROBRAS (2010)
ARTIFICIAL LIFT METHODS NUMBER OF APPLICATIONS
Natural 238
Continuos Gas Lift 538
Intermittent Gas lift 543
Sucker rod pump 5.849
Electric submersible pump - ESP 278
Progressive Cavity Pump 898
Others 130
Total 8.474
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TOP ARTIFICIAL LIFT METHODS IN BRAZIL
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Thank you for your attention
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João Ribeiro