Course Code: DIGTR 3241
107 Course Visits
Sustainable Solutions and Best Practice Digital Technologies for Production
Course Sector:
Digital Transformation and Innovation
Course Dates and Locations
Choose a date and location to book your seat
No.
Date
Days
Location
Fees
Enrollment
01
15 - 19 Sep 2025
5 Days
Dubai, UAE
$4,250
02
24 - 28 Nov 2025
5 Days
Abu Dhabi, UAE
$4,250
Introduction
Training course introducion / brief
This course explores the latest sustainable solutions and digital technologies used in production boosting, with a focus on pumps and compressors. Participants will gain insights into optimizing system efficiency, reducing energy consumption, and integrating smart technologies to enhance operational performance while minimizing environmentalimpact.
Training Methodology:
  • Interactive classroom lectures and technical discussions
  • Case studies from industry leaders in oil & gas
  • Hands on exercises using digital simulation tools
  • Real world troubleshooting techniques
  • Best practice frameworks for sustainable production boosting
Course Objectives
At the end of the training course, participants will be able to
  • Understand sustainable solutions and digital technologies for pump and compressor optimization
  • Apply best practices in pump and compressor design, operation, and selection
  • Utilize advanced monitoring and performance analysis techniques
  • Optimize energy consumption and reduce emissions in production systems
  • Develop cost effective, environmentally sustainable production boosting strategies
Course Audience
Who is this course for, and can benefit the most
  • Mechanical & Rotating Equipment Engineers
  • Process Engineers
  • Senior Production Engineers
  • Asset Integrity Managers
  • Operations & Maintenance Engineers
  • Sustainability & Energy Efficiency Specialists
  • R&D Professionals in Oil & Gas
Course Outline
The course aims and learning outcomes
Fundamentals of Production Boosting & Sustainability
  • Overview of artificial lift methods and production boosting techniques
  • Fundamentals of pump and compressor operation
  • Key performance indicators (KPIs) for production optimization
  • Environmental and economic considerations in oil & gas sustainability
Sustainable Pumping Technologies & Design
  • Energy efficient pump technologies (e.g., ESPs, PCPs, multiphase pumps)
  • Optimizing pump design for reduced energy consumption
  • Life cycle assessment (LCA) of pump systems
  • Case studies of sustainable pump applications
Sustainable Compressor Technologies & Digital Innovations
  • Energy efficient compressor technologies (e.g., centrifugal, reciprocating)
  • Waste heat recovery & emissions reduction techniques
  • Industrial Internet of Things ( IIoT ) applications for real time monitoring
  • Advanced analytics, AI, and predictive maintenance for performance
  • optimization
Troubleshooting & Performance Analysis
  • Diagnosing common pump and compressor issues (e.g., cavitation, surge, fouling)
  • Performance testing and data interpretation
  • Troubleshooting strategies for system failures
  • Best practices for extending equipment lifespan
Economic & Environmental Impact Assessment
  • Cost benefit analysis of sustainable production boosting technologies
  • Investment decision making & risk assessment
  • Environmental compliance and mitigation strategies
  • Case studies of economic and environmental impact assessments
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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