This workshop provides a detailed understanding of damage mechanisms as outlined in API RP 571, with a focus on refining, petrochemical, and petroleum industry applications. It covers the identification, evaluation, and investigation of material degradation processes, enabling participants to recognize risks and implement effective mitigation strategies. Practical case studies and best practices are emphasized to strengthen knowledge in asset integrity and materials engineering.

Workshop Objectives

• Understand the scope and application of API RP 571 in refining and petrochemical operations.
  
• Identify common damage mechanisms and their impact on equipment reliability.
  
• Apply investigation techniques for assessing material degradation and failures.
  
• Evaluate preventive and mitigation strategies in line with industry standards.
  
• Strengthen technical decision-making to support integrity and reliability programs.

About the Presenter

The workshop is led by an experienced industry professional in materials engineering, asset integrity, and failure investigation across refining and petrochemical facilities. With a strong background in technical practice and training, the presenter provides participants with practical, industry-focused insights to apply API RP 571 effectively in real-world operations.

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Material Balance Modeling
November 28, 2026 - November 29, 2026
Material Balance Modeling

Material balance is one of the most direct methods available to a reservoir engineer for estimating hydrocarbons in place, identifying the drive mechanism and forecasting reservoir performance. It requires far less data than a full numerical model, and when it is set up correctly it produces results that can be defended in technical reviews and reserve audits.This workshop covers the complete material balance workflow as it is applied on producing assets. It begins by placing the reservoir within the integrated production system, then moves through data preparation and quality control, tank model construction, drive mechanism identification, and the use of analytical and graphical diagnostic tools. Participants work through the classical diagnostic plots, including Dake and Campbell, and learn how to read what each plot indicates about depletion, gas cap expansion and water influx.The second part of the workshop addresses history matching using both analytical and graphical techniques, determination of STOIIP, aquifer identification and sizing, and running prediction cases to generate production forecasts and recovery estimates. Results are compared against volumetric and simulation-based estimates so that participants understand where material balance is reliable and where a numerical model becomes necessary.The workshop is delivered at an advanced level and is intended for engineers who already work with production and pressure data and want a structured, repeatable method for in-place volumes, drive mechanism evaluation and performance prediction.