5-day course covering end-to-end pipeline integrity management, from threat assessment, ILI and defect/FFS evaluation to corrosion control, repair, and risk-based PIMS implementation using real-world cases.
By Mostafa SwilamMostafa Swilam is an Asset Integrity Engineer, focused on pipeline and static equipment integrity. He develops and executes RBI studies, Inline Inspection scope, reviews fitness-for-service assessments, corrosion management programs, and oversees pipeline integrity SOWs for transmission and gathering systems. He works as an industry SME and associate instructor, delivering practical, experience-based training built on live field cases.
A 5-day, standards-anchored course on managing pipeline integrity across its full lifecycle: threat identification, in-line inspection (ILI) and direct assessment, defect and fitness-for-service (FFS) evaluation, corrosion management and mitigation, pipeline repair, and building a risk-based pipeline integrity management program (PIMS). Content is anchored to API 1160, API 1163, ASME B31G/RSTRENG, ASME B31.8S/B31.4, and AMPP/NACE SP0102/SP0169, and is built around real case data.
The drilling fluid in the well is very similar to the blood in your body, you should test your blood and read your body messages for you and act accordingly to keep yourself healthy. Drilling fluid also send you messages about your well, you should understand your drilling fluid, know its functions, test its properties, and read your well messages to keep your well stable, safe, and efficiently perform your drilling process.
From primary raw general guidelines to detailed sophisticated modeling studies
Organizing, analyzing, and managing data for efficient oilfield operations.
Principles and techniques of well stimulation using hydraulic fracturing methods.
A Comprehensive Nodal Analysis Theory and Practice
Performing and interpreting production logging tools to assess well performance.
Performing and interpreting production logging tools to assess well performance.
Organizing, analyzing, and managing data for efficient oilfield operations.
modeling well performance and production optimization through nodal analysis.
Principles and techniques of well stimulation using hydraulic fracturing methods.
Design, installation, and optimization of electric submersible pump systems.
Planning and executing well perforations to optimize reservoir drainage.
Organizing, analyzing, and managing data for efficient oilfield operations.
Applying rate transient analysis to assess reservoir performance and predict future production.
Core Python programming concepts applied to engineering and data tasks.
Advanced principles and techniques of pressure transient analysis for reservoir evaluation
Designing and executing acid treatments to enhance well productivity.
Techniques and procedures to prevent and manage wellbore kick and blowouts.
Analysis of subsurface formations using logs for reservoir characterization
Techniques for performing complex well interventions safely and efficiently.
Principles and design of gas lift systems to enhance production efficiency.
Simulation of thermal enhanced oil recovery techniques using CMG software.
Studying stress, strain, and rock mechanics to support reservoir management and drilling.
Design, installation, and optimization of electric submersible pump systems.
Strategies to maintain well integrity throughout the well lifecycle.
Master essential skills in Python, SQL, data analytics, machine learning, and MLOps. Gain hands-on experience and practical knowledge to effectively apply advanced data science techniques in the oil industry.
Design, operation, and optimization of sucker rod pumping systems in wells.
More than 20 cases from practical life covering different concepts in Analytical Reservoir Engineering
Hands-on modeling and simulation of reservoirs for production forecasting and planning
Managing process risks to prevent accidents and ensure operational safety.
Ensuring continuous and efficient flow of hydrocarbons through production systems.
Ensuring continuous and efficient flow of hydrocarbons through production systems.
Leveraging Power BI for visualization, analysis, and decision-making in oil & gas data.
Techniques and applications of coiled tubing for well intervention and maintenance.
The Progressing Cavity Pump (PCP) is emerging as a game-changer in oil production. Compared to traditional artificial lift methods, PCPs offer numerous advantages.
Design and execution of well completions for optimal production and safety.
Understanding reservoir fluid behavior and modeling using PVT analysis and equations of state
Optimizing well and field production performance using nodal analysis techniques.
In-depth course on jet pump principles, design, operation, and optimization for efficient artificial lift performance.
This course delivers an end-to-end understanding of the drilling lifecycle, from rig systems and well planning through to field execution.
A structured course on estimating, classifying, and reporting petroleum reserves and resources in line with industry standards.
A practical course on preventing, monitoring, and mitigating mineral scale formation to protect well and production system integrity
Implementation of mechanical and chemical barriers to prevent reservoir solids from entering the wellbore while maintaining optimal fluid production.