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course | Advanced Artificial Lift and Optimization Skills

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OGC-1269 | Advanced Artificial Lift and Optimization Skills

Course Sector : Oil, Gas and Chemical

Duration
Date from
Date to Course Venue Course fees Book a course
4 Days2025-04-072025-04-10Dubai$4,250 Book now
4 Days2025-08-042025-08-07kuala lumpur$4,950 Book now
4 Days2025-11-242025-11-27Abu Dhabi$4,250 Book now
4 Days2025-01-122025-01-15Riyadh$4,250 Book now

Course Introduction

This course covers the selection, design, diagnosis and troubleshooting of the major artificial lift methods (primarily ESPs and gas lift, although others will be considered) for both conventional and unconventional reservoirs. You will gain an appreciation of the key concepts involved in the analysis of artificial lift methods for challenging environments and a practical understanding of trend analysis and pattern recognition to solve operational problems. Well modelling software (Prosper) will be used by the instructor to illustrate design and troubleshooting techniques and applications with real field examples.

This course ensures that fundamental concepts of artificial lift systems are well explained and clearly understood before progressing to the application of these concepts in difficult or complex well conditions. A clear and logical workflow will be explained so that diagnosis and troubleshooting becomes easy. This technique means that participants have a solid foundation to build a deep understanding of artificial lift systems and the confidence to apply the principles learned in challenging situations.


Course objective

  • Artificial lift methods, concepts of operation and equipment
  • Selection criteria for challenging well conditions
  • How to perform design procedures for artificial lift wells
  • How to recognise the correct data required for well analysis
  • Diagnosing and troubleshooting artificial lift well performance following a logical workflow
  • Optimising the artificial lift system for production and long term reliability

Course Outline | 01 Day One

Recap of well and reservoir performance (fluid properties, outflow and inflow performance)

  • Use of pressure gradient plots for artificial lift well design and diagnosis
  • Review of artificial lift systems components and physics of operation
  • Special considerations for the application of artificial lift to unconventional reservoirs
  • Design, diagnosis and practical troubleshooting techniques for start-up and operation
  • Workshop sessions and tutorials covering building and matching of well models
  • Reservoir performance: wellbore and reservoir performance overview
  • Pressure loss in the wellbore
  • Well productivity
  • Concepts of productivity index
  • Inflow and outflow relationships
  • Formation damage

Course Outline | 02 Day Two

Well production problems: asphaltenes, waxes, hydrates, inorganic, scale formation, corrosion

  • Formation damage causes and prevention techniques
  • Impact of changing well conditions and need for artificial lift
  • Overview of artificial lift technology: sucker road pump design, hydraulic pump design, jet pump, gas lift, ESP
  • Application of artificial lift technology and its limitations
  • Artificial lift screening methods
  • Damage prevention
  • Evaluation of damage - production performance, and pressure analysis review
  • Damage removal: two basic acidizing treatments and acidizing materials and methods
  • Damage removal by chemical solvents
  • Acid type and concentration
  • Evaluation of acid treatments
  • Impact of changing well conditions and need for artificial lift
  • Overview of artificial lift technology : sucker road pump design, hydraulic pump design, jet pump, gas lift, Electric Submersible Pump (ESP)
  • Application of artificial lift technology and its limitations
  • Artificial lift screening methods

Course Outline | 03 Day Three

Formation damage

  • Well production problems: asphaltenes, waxes, hydrates, inorganic, scale formation, corrosion
  • Drilling-induced formation damage
  • Damage mechanisms - how are sandstones and carbonates damaged, how do formation mineralogy and clay chemistry influence damage, what about scale, paraffin .. Etc.
  • Formation damage causes
  • Concept, limitations and advantages of the sucker rod pumping system
  • Design and components of the sucker rod pump
  • Troubleshooting of the sucker rod pump systems
  • Concept and types of the gas lift system
  • Design and components of the gas lift system
  • Limitation and advantages of the gas lift system

Course Outline | 04 Day Four

Concept, equipment and accessories of the ESP system

  • ESP design: pump performance curves, pump intake curves, typical problems, installation, troubleshooting ; best practices for installation and maintenance;
  • Steps to correctly size an electric submersible pump (ESP) system. basic sizing principles for the pump, motor and cable
  • Importance of correctly matching well productivity to pump performance
  • Use of data to diagnose well/equipment problems
  • Limitation and advantages of the ESP system
  • Concept, limitation and advantages of the hydraulic pumps

Concept, equipment and accessories of the ESP system (Continuation)

  • Concept, limitation and advantages of the jet pumping
  • Concept, limitation and advantages of the PCP pumps
  • Operating conditions of the hydraulic, jet and PCP pumps
  • Best practices for installation and maintenance of the artificial lift techniques
  • Criteria for selection of artificial lift systems and artificial lift screening methods
Course Certificates
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BOOST’s Professional Attendance Certificate “BPAC”

BPAC is always given to the delegates after completing the training course,and depends on their attendance of the program at a rate of no less than 80%,besides their active participation and engagement during the program sessions.

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