Advanced ESP Operation and Troubleshooting
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Advanced ESP Operation and Troubleshooting
Advanced ESP Operation and Troubleshooting
What are the Goals?
By the end of this training course, participants will learn to:
- Master ESP system operation
- Apply advanced troubleshooting techniques
- Demonstrate expertise in special deployments
- Analyse ESP operation case studies
Who is this Training Course for?
This training course is suitable to a wide range of professionals but will greatly benefit:
- ESP Application Engineers
- Petroleum engineers: Enhance skills in ESP operations
- Production technicians: Improve ESP troubleshooting abilities
- Drilling and completion engineers: Gain ESP deployment expertise
- Facility managers: Optimise ESP system efficiency
- New entrants to the industry: Learn ESP fundamentals
Daily Agenda
Day One: Introduction
Part I: Review of Fundamentals
- Artificial Lifting
- Short History of ESP Applications
- Basic Features of ESP Installations
- Well Inflow Performance
- Hydraulic Fundamentals
- Electrical Fundamentals
- Basics of Systems Analysis
Part II: ESP Components & Operational Features
- The Submersible Pump
- The ESP Motor
- The Protector or Seal Section
- The Gravitational Gas Separator
- The ESP Cable
- Miscellaneous Downhole Equipment
- Surface Equipment
Day Two: Applications & Installations
Part I: Use of ESP Equipment in Special Conditions
- Pumping Viscous Liquids
- Low or Changing Pumping Rates
- Production of Gassy Wells
- Production of Abrasive Solids
- High Well Temperatures
- Variable-Frequency Operation
- Other Problems
Part II: Design of ESP Installations
- Data Requirements
- Conventional Design
- Conventional Design Considering Motor Slip
- Gassy Well Design
- Design of a Variable Speed Drive Installation
- Design of a Permanent Magnet Motor Installation
- Comparison of Induction Motor and Permanent Magnet Motor Installations
Day Three: Operation & Optimisation
Part I: Analysis and Optimisation
- NODAL Analysis
- Determination of Well Inflow Performance
- Power Efficiency of ESP Installations
- Optimisation of ESP Operations
Part II: Operation, Monitoring, and Surveillance of ESP Systems
- Guidelines for Running and Pulling
- Production Control
- Monitoring ESP Operations
- Surveillance of ESP Operations
Day Four: Troubleshooting & Special Installation
Part I: Failures and Troubleshooting
- General Causes of Failures
- Typical Failures of System Components
- ESP Teardown Analysis
- Failure Tracking
- Run-Life Estimation
- Interpretation of Ammeter Charts (Troubleshooting)
- Nodal Analysis Techniques (Troubleshooting)
Part II: Special Installations
- Producing a Single Zone
- Dual Zone Installations
- Cable Suspended Units
- Coiled Tubing Installations
- Thru-Tubing Deployed Systems
- Horizontal Configuration & Applications
Day Five: Case Studies & Performance Analysis
Part I: Special Cases & Case Studies
- VSD & FSD debugging and troubleshooting
- DIFA (ESP fault disassembly analysis)
- Hybrid ESP – Gas Lift Application
- Y-tool installation and selection
- Case Studies
Part II: Performance Analysis
- Design of a Conventional ESP Installation
- Conventional Installation Design with Motor Slip
- ESP Installation Design for a Gassy Well
- Nodal Analysis of ESP Installations
- Well Performance Analysis
- Well Testing Using ESP Units