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course | Sustainable Solutions and Best Practice Digital Technologies for Production Boosting: Focus on Pumps and Compressors

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MEC-1874 | Sustainable Solutions and Best Practice Digital Technologies for Production Boosting: Focus on Pumps and Compressors

Course Sector : Mechanical Engineering

Duration
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Date to Course Venue Course fees Book a course
15 Days2025-05-032025-05-21London$16,500 Book now

Course Introduction

Training Methodology:

  • Classroom lectures and discussions
  • Interactive workshops and case studies
  • Hands-on exercises using simulation software
  • Site visits to O&G MARKET LEADER facilities (optional)
  • Group projects and presentations

Course objective

  • Understand the latest sustainable solutions and digital technologies for boosting production with pumps and compressors.
  • Apply best practice engineering design and selection principles for optimal pump and compressor performance.
  • Utilize advanced performance analysis techniques to troubleshoot, optimize, and maintain pumping and compression systems.
  • Evaluate the economic and environmental impacts of different production boosting technologies.
  • Develop and implement sustainable solutions for maximizing production while minimizing environmental footprint.

Course Outline | 01 DAY ONE

 

Module 1: Introduction to Production Boosting

  • Overview of artificial lift methods and their applications
  • Fundamentals of pump and compressor operation
  • Key performance indicators (KPIs) for production boosting
  • Sustainability considerations in oil and gas production

Course Outline | 02 DAY TWO

Module 2: Sustainable Solutions for Pump Systems

  • Energy-efficient pump technologies (e.g., ESPs, PCPs, multiphase pumps)
  • Optimizing pump design and operation for reduced energy consumption
  • Life cycle assessment (LCA) of pump systems
  • Case studies of sustainable pump applications in O&G MARKET LEADER projects

Course Outline | 03 DAY THREE

Module 3: Sustainable Solutions for Compressor Systems

  • Energy-efficient compressor technologies (e.g., centrifugal, reciprocating)
  • Optimizing compressor design and operation for reduced emissions
  • Waste heat recovery and utilization in compressor systems
  • Case studies of sustainable compressor applications in O&G MARKET LEADER projects

Course Outline | 04 DAY FOUR

Module 4: Digital Technologies for Pump and Compressor Optimization

  • Introduction to Industrial Internet of Things (IIoT) and its applications in production boosting
  • Real-time monitoring and data acquisition systems for pumps and compressors
  • Advanced analytics and machine learning for performance optimization
  • Predictive maintenance and failure prevention strategies

Course Outline | 05 DAY FIVE

Module 5: Engineering Design of Pumping Systems

  • Pump selection criteria and best practices
  • Hydraulic analysis and system design considerations
  • Material selection for corrosion and wear resistance
  • Case studies of pump design optimization in O&G MARKET LEADER projects

Course Outline | 06 DAY SIX

Module 6: Engineering Design of Compressor Systems

  • Compressor selection criteria and best practices
  • Thermodynamic analysis and system design considerations
  • Material selection for high-pressure and high-temperature applications
  • Case studies of compressor design optimization in O&G MARKET LEADER projects

Course Outline | 07 DAY SEVEN

Module 7: Pump Performance Analysis and Troubleshooting

  • Performance testing and data interpretation
  • Diagnosing common pump problems (e.g., cavitation, vibration, wear)
  • Troubleshooting techniques and best practices
  • Case studies of pump performance optimization in O&G MARKET LEADER projects

Course Outline | 08 DAY EIGHT

Module 8: Compressor Performance Analysis and Troubleshooting

  • Performance testing and data interpretation
  • Diagnosing common compressor problems (e.g., surge, fouling, lubrication issues)
  • Troubleshooting techniques and best practices
  • Case studies of compressor performance optimization in O&G MARKET LEADER projects

Course Outline | 09 DAY NINE

Module 9: Advanced Pump Technologies

  • Emerging pump technologies (e.g., smart pumps, downhole separation)
  • Applications of artificial intelligence (AI) in pump optimization
  • Future trends in pump technology and sustainability
  • Research and development initiatives in O&G MARKET LEADER

Course Outline | 10 DAY TEN

Module 10: Advanced Compressor Technologies

  • Emerging compressor technologies (e.g., magnetic bearing compressors, hydrogen compression)
  • Applications of AI in compressor optimization
  • Future trends in compressor technology and sustainability
  • Research and development initiatives in O&G MARKET LEADER

Course Outline | 11 DAY ELEVEN

Module 11: Economic Evaluation of Production Boosting Technologies

  • Life cycle cost analysis (LCCA) of pump and compressor systems

 

Course Outline | 12 DAY TWELVE

Module 12: Evaluating the economic benefits of sustainable solutions

  • Investment decision-making and risk assessment
  • Case studies of economic evaluation in O&G MARKET LEADER projects

Course Outline | 13 DAY THIRTEEN

Module 13: Environmental Impact Assessment of Production Boosting Technologies

  • Environmental regulations and compliance requirements

Course Outline | 14 DAY FOURTEEN

Module 14: Assessing the environmental footprint of pump and compressor systems

  • Assessing the environmental footprint of pump and compressor systems
  • Mitigation strategies and best practices
  • Case studies of environmental impact assessment in O&G MARKET LEADER projects

Course Outline | 15 DAY FIFTEEN

Module 15: Mitigation strategies and best practices

  • Case studies of environmental impact assessment in O&G MARKET LEADER projects
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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