Course Schedules

Classroom 7 Sessions
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Training Course Overview

Reservoir Engineering Core System-Dynamic Training Course provides a comprehensive understanding of petroleum reservoir engineering principles and best practices used to evaluate and maximize hydrocarbon recovery. This Reservoir Engineering Training Course focuses on fluid flow in porous media, reservoir characterization, and the application of key engineering tools such as Material Balance Equation (MBE) and well testing techniques.

Participants will explore reservoir fluids, drive mechanisms, and recovery processes including primary, secondary, and enhanced oil recovery methods. The course also integrates practical insights into water flooding, reservoir simulation concepts, and advanced EOR techniques. Through real-world examples, exercises, and technical analysis, this training course equips professionals with the skills required to assess reserves, optimize production strategies, and improve recovery efficiency across the full lifecycle of oil and gas fields.

Training Course Objectives

Reservoir Engineering Training Course objectives are designed to build strong technical expertise in reservoir evaluation, fluid flow analysis, and recovery optimization. This training course enables participants to apply engineering methods and best practices to improve reservoir performance and decision-making.

By the end of this training course, participants will be able to:

  • Apply volumetric methods and Material Balance Equation (MBE) to estimate hydrocarbon reserves
  • Understand oil and gas flow behavior under different flow regimes in porous media
  • Interpret and apply well testing methods including drawdown and buildup analysis
  • Analyze reservoir drive mechanisms and their impact on recovery performance
  • Calculate water breakthrough time and saturation during water flooding
  • Evaluate and apply enhanced oil recovery (EOR) techniques including chemical, thermal, and miscible methods
  • Understand reservoir fluid properties and apply Equation of State (EOS) models
  • Integrate core analysis data (RCAL & SCAL) into reservoir evaluation and planning

Designed for

Reservoir Engineering Core System-Dynamic Training Course is designed for professionals involved in reservoir evaluation, production optimization, and field development. It is particularly valuable for those seeking to enhance their understanding of reservoir behavior and advanced recovery techniques.

This training course will greatly benefit:

  • Petroleum Engineers and Production Engineers working on reservoir performance
  • Processing Engineers and multidisciplinary engineering teams
  • Geologists and Petrophysicists involved in reservoir characterization
  • Engineers new to reservoir engineering concepts and practices
  • Technical professionals interested in advanced enhanced oil recovery (EOR) methods
  • Individuals seeking to improve reservoir management and recovery strategies

Learning Methods

Reservoir Engineering Training Course adopts a structured and interactive learning approach to ensure strong comprehension and practical application. The training course combines expert-led presentations with technical exercises, case studies, and industry-based examples.

Participants will engage in analytical problem-solving sessions, including reserve estimation, well test interpretation, and water flooding calculations. Industry videos and real field scenarios are used to illustrate reservoir behavior, fluid flow, and recovery processes.

This blended methodology ensures participants develop both theoretical knowledge and practical engineering skills. By linking reservoir engineering concepts with real-world applications, the training course prepares professionals to optimize recovery, improve reservoir performance, and support efficient oil and gas field development.

Course Content

Day 1

Geology and Reservoir Rock Properties

  • Definitions of petroleum engineering and reservoir engineering
  • Responsibilities and required tasks of reservoir engineers
  • Different types of rocks, rock cyclic, and depositional environments
  • Types of oil traps: structural, stratigraphic, and combination
  • Global distribution of oil and gas reserves and top producing countries
  • Routine and Special Core Analysis (RCAL & SCAL) for rock properties
Day 2

Phase Diagram and Reservoir Drive Mechanisms

  • Reservoir fluid properties and their variation with pressure
  • Phase diagram concept and its important applications
  • Five different reservoir fluids, Lab and field identification
  • Applications of ideal and real gas Equation of State (EOS)
  • Three phases of oil recovery: primary, secondary, and enhanced
  • Six different primary reservoir drive mechanisms
Day 3

Material Balance Equation (MBE) Applications

  • Definition, classification, and calculation of reserve
  • Application of Material Balance Equation (MBE) Technique
  • Volumetric reservoirs and Havlena and Odeh Technique
  • Types and purposes of well tests
  • Single well and multi-well testing methods
  • Geological information from well testing
Day 4

Gas Resources and Water Flooding

  • Concepts and global distribution of gas reserve
  • Conventional and unconventional natural gas sources
  • Gas hydrates as a n important future energy source
  • Secondary recovery and problems of water flooding
  • Frontal displacement (fractional flow) theory and calculation example
  • Design procedure and an example of how to design a reservoir simulation study
Day 5

Enhanced Oil Recovery (EOR) Techniques

  • Enhanced Oil Recovery (EOR ) Methods and need to apply
  • Chemical EOR: polymer, alkaline/surfactant/polymer (ASP)
  • Solvent EOR: Carbon Dioxide, and hydrocarbon gas injections
  • Thermal EOR process and heavy oil reserves
  • Steam Assisted Gravity Drainage (SAGD) EOR Process
  • Microbial, Enzyme, and Low Salinity Water (LSW) EOR processes

The Certificate

Recognition
  • Anderson Certificate of Completion for delegates who attend and complete the training course
FREQUENTLY ASKED QUESTIONS

Learn more about this course

Yes. The Reservoir Engineering Core System-Dynamic training course can be customised and delivered exclusively for organisations seeking a tailored learning solution. Course content can be adapted to address specific business objectives, operational challenges, industry requirements, and organisational priorities. Customised training allows teams to focus on the topics most relevant to their roles while supporting wider organisational development goals.

No. The Reservoir Engineering Core System-Dynamic training course is open to professionals from a wide range of backgrounds and experience levels. The course content is structured to provide value to both those who are new to the subject and experienced practitioners seeking to deepen their expertise. While some prior knowledge may enhance understanding of certain concepts, it is not a requirement for participation

The Reservoir Engineering Core System-Dynamic training course uses a variety of learning approaches to maximise participant engagement and knowledge retention. These may include expert-led presentations, practical exercises, case studies, group discussions, scenario-based activities, and collaborative learning opportunities. This approach encourages active participation and helps participants translate learning into practical workplace results.

The Reservoir Engineering Core System-Dynamic training course is suitable for professionals who want to expand their knowledge, strengthen their practical skills, and improve their effectiveness within their current or future roles. It is valuable for managers, team leaders, supervisors, specialists, consultants, and professionals seeking to stay current with industry developments and best practices. Whether your goal is career advancement, improved decision-making, or enhanced workplace performance, this course provides relevant knowledge and practical insights to support your professional ambitions.

If you would like additional information about the Reservoir Engineering Core System-Dynamic training course, our professional support team is available to assist with course enquiries, registration guidance, group bookings, and customised training requirements. We are committed to helping you identify the most suitable learning solution for your professional development goals.

 

Participants attending the Reservoir Engineering Core System-Dynamic training course gain access to valuable industry insights, practical techniques, and internationally recognised best practices. The course helps professionals improve performance, strengthen confidence, broaden their perspective, and develop skills that contribute to both personal and organisational success. It also provides an excellent opportunity to exchange ideas and experiences with professionals from diverse sectors and backgrounds.

The Reservoir Engineering Core System-Dynamic training course combines practical knowledge, current industry practices, and expert guidance to create a highly relevant learning experience. Rather than focusing solely on theory, the course emphasises practical application, enabling participants to develop skills and approaches that can be implemented directly within their organisations. This balance of knowledge and practical relevance helps participants achieve meaningful and lasting professional impact.

Yes. Participants who successfully complete the Reservoir Engineering Core System-Dynamic training course will receive a Anderson Certificate of Completion, demonstrating their commitment to professional development and continuous learning. This certificate provides formal recognition of the knowledge and skills gained during the course and can support professional growth and career progression.

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