Course Code: OGC 1105
18411 Course Visits
Artificial Lift Technology
Course Sector:
Oil, Gas and Chemical
Course Dates and Locations
Choose a date and location to book your seat
No.
Date
Days
Location
Fees
Enrollment
01
07 - 11 Jul 2025
5 Days
Geneva, Switzerland
$5,950
02
27 - 31 Oct 2025
5 Days
Dubai, UAE
$4,250
03
16 - 20 Nov 2025
5 Days
Muscat, Oman
$4,250
Introduction
Training course introducion / brief
This course is designed to introduce an overview of various artificial lift solutions and related production optimization concepts. After introducing the need for an artificial lift system, training will focus on each of the following lift methods: Gas lift, Reciprocating Rod Lift, Progressive Cavity Pumping (PCP), Hydraulic Pumping (HP), Electrical Submersible Pumping (ESP), Plunger and Capillary System. For each lift type, the course covers main components, application envelope, relative strengths and weaknesses.
The course will close with a discussion session wherein trainees would discuss their challenges and plans for lift systems with a view to understand applicability of the concepts learned during the training.
Course Objectives
At the end of the training course, participants will be able to

  • Understand the fundamentals & production performance of various artificial lift methodologies.
  •  Increase awareness and knowledge of artificial lift methodologies and factors affecting optimal designs and operations, including fluid properties and multiphase flow regimes.
  •  An overview of lift techniques, technologies, and equipment also covers alternate deployment scenarios and multisensory applications for surveillance and optimization.
  •  Possess the basic skills required to select and size artificial lift systems
  •  Be able to select suitable artificial lift system, plan its operation, monitor and analyze it's performance
  •  Learn strategies and best practices for field production optimization 

Course Audience
Who is this course for, and can benefit the most
  • Process design
  •  Unit Operator
  •  Environmental
  •  Process safety engineer
  •  Gasoline blender engineer
  •  Lab supervisor
  •  Supply chain engineer
  •  Distillates analyst
  •  Models engineer
  •  Chemical Operator
  •  Chemical Plant Operator
  •  Chemical Process Technician
  •  Control Room Supervisor
  •  Gas Plant Process Operator
  •  Gas Production Operator
  •  Gas Terminal Operations and Storage
  •  Gathering Pipeline engineer
  •  Oil Terminal / Storage engineer
  •  Pipeline Maintenance / Equipment / Compliance / Repair
  •  Pipeline Testing / Technician / Supervisor / Safety
  •  Plant Equipment Operator
  •  Plant Operations Technician
  • Plant Shutdown
  • Plant Supervisor
  • Power Distribution
  • Power Plant Manager
  • Process Supervisor
  • Refinery Operations Technician / Manager
  • Terminal Operator / Manager
  • Utilities Operator
Course Outline
The course aims and learning outcomes

1 Module (1): Oil Field Production System, including:

  • 1.1 Oil origin and Geology
  • 1.2 Well drilling and well completion types
  • 1.3 Surface production facilities
  • 1.4 Reservoir recovery methodologies
  • 1.4.1 Natural depletion (production) system
  • 1.4.2 Artificial lift production systems


2 Module (2): Gas Lift (GL), including:

  • 2.1 Introduction
  • 2.2 Continue and Intermittent Gas Lift
  • 2.3 Main Gas Lift Equipment Parts
  • 2.4 IPR and Designing Gas Lift
  • 2.5 Optimization and Allocation of Gas for Gas lift
  • 2.6 Production System With Artificial List by Gas Lift
  • 2.7 Gas Lift Trouble shooting

1 Module (3): Sucker Rod Pump (SRP), including:

  • 1.1 Introduction
  • 1.2 Intake Pump Curve
  • 1.3 Production Optimization
  • 1.4 Design Sucker Rod Pump API RP11L
  • 1.5 Component Main Tool
  • 1.6 Factors affecting the movement of rod
  • 1.7 SRP Trouble Shooting
  • 1.8 Q&A and exercises

1 Module (4): Progressive Cavity Pump (PCP), including:

  • 1.1 Introduction
  • 1.2 Description of Equipment
  • 1.3 Elastomer
  • 1.4 Design
  • 1.5 PCP trouble shooting
  • 1.6 Q&A and exercises


2 Module (5): Electric Submersible Pump (ESP), including:

  • 2.1 Introduction
  • 2.2 Basics of ESP calculations
  • 2.3 ESP Construction
  • 2.4 Pump Selection
  • 2.5 Applications in the Field
  • 2.6 ESP Trouble Shooting
  • 2.7 Q&A and exercises


1 Module (6): Hydraulic Pump (HP), including:

  • 1.1 Surface Equipment
  • 1.2 Types of Pump Units
  • 1.3 Pump Sizing
  • 1.4 Pump selection
  • 1.5 Hydraulic Pumps Trouble Shooting
  • 1.6 Q&A and exercises

1 Module (6): Jet Pump (JP), including:

  • 1.1 Introduction
  • 1.2 Gas issue
  • 1.3 Nozzle & Throat sizing
  • 1.4 Jet pump calculations
  • 1.5 Pump performance graph
  • 1.6 Jet pump trouble shooting
  • 1.7 Q&A and exercises

Providers and Associations
Providing the best training services and benefits to our valued clients
Boost certificate of completion
BOOST's Professional Attendance Certificate “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.
ENDORSED EDUCATION PROVIDER
Over all rating
Excellent
Average
Below average
Flexible deadlines
Customized dates accordance to your schedule
Shareable Certificate
Earn certificate upon completion
COURSE METHODOLOGY

Our Training programs are implemented by combining the participants' academic knowledge and practical practice (30% theoretical / 70% practical activities).

At The end of the training program, Participants are involved in practical workshop to show their skills in applying what they were trained for. A detailed report is submitted to each participant and the training department in the organization on the results of the participant's performance and the return on training. Our programs focus on exercises, case studies, and individual and group presentations.

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