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Best Practices of Enhanced Oil Recovery Projects (RES 429)

COURSE SCHEDULE

Code Date Location price (€)*
RES 429 14 - 18 Dec 2026 Online 3300
RES 429 6 – 10 Jul 2026 Online 3300
RES 429 1 – 5 Jun 2026 Istanbul 4400
RES 429 19 – 23 Oct 2026 Doha 4400

COURSE OVERVIEW

The course is designed to provide participants with a solid understanding of the design principles, classifications, screening criteria, and field applications of both current and advanced Enhanced Oil Recovery (EOR) processes. It presents an integrated perspective on waterflooding and EOR, explaining how each process is linked to fundamental reservoir engineering principles and how these concepts translate into field performance. The course covers chemical, miscible gas, and thermal EOR methods in detail, highlighting their mechanisms, design considerations, and operational challenges.

Emphasis is placed on the importance of early EOR planning—often implemented in a secondary recovery mode—to meet design objectives and maximize recovery. The program addresses data acquisition requirements, workflow development, reservoir characterization, geological considerations, operational constraints, and uncertainties associated with various EOR methods. It also discusses the rationale for waterflooding, common causes of failure, and strategies for improvement. Detailed case studies from worldwide field applications are used to illustrate practical implementation of chemical, miscible, and thermal EOR techniques. In addition, advanced and hybrid EOR methods—such as low-salinity flooding, microbial EOR, and other emerging technologies—are presented and discussed.

The course is delivered in an interactive learning environment that combines lectures, industry videos, and analysis of real field cases to reinforce key concepts and practical understanding.

COURSE OUTLINE

5 days
Day 1

o Different enhanced oil recovery (EOR) methods.
o Data gathering of RCA and SCAL for EOR projects
o Screening criteria and mechanisms of different
EOR methods.
o How to maximize oil recovery using mobility ratio
and capillary number
o Limitations, challenges, uncertainties and problems

Day 2

o Reservoir concepts, main rock and fluid properties for EOR

o Using Routine and Special Core Analysis (RCAL &  SCAL)

o Reservoir fluids and downhole  sampling tools

o Detailed reservoir fluid study (five tests)

o Different tools for downhole fluid sampling

Advanced reservoir geology for EOR

Day 3

o Water flooding

o Classification and screening of different chemical EOR methods

o Polymer flooding

o Alkaline/ polymer (AP) and ASP flooding

oThree actual field results

Day 4

o Miscible gas EOR: CO2 and Nitrogen injection methods

o Determination of minimum miscibility pressure (MMP)

o Carbon dioxide miscible and immiscible flooding processes

o Carbon dioxide EOR screening 

oActual field cases for CO2 and WAG process

Day 5

o Thermal processes

o Steam-Assisted-Gravity-Drainage (SAGD)

o In-situ combustion method

o Microbial EOR, Low Salinity Water (LSW), electric, seismic EOR

o Toe-to-Heel Air Injection (THAI) and CAPRI processes

o Hybrid-chemical thermal and CO2-thermal EOR

INSTRUCTOR

Professor Shedid A. Shedid

FAQ

DESIGNED FOR

Petroleum Engineers & Reservoir Engineers, Geologists, Petrophysicists, Geophysicists, Geological engineers & other discipline engineers, other individuals who need to know about current & advanced techniques of EOR.

COURSE LEVEL
  •  Intermediate 
LEARNING OBJECTIVES

The main learning objectives of the course include
o Describe and apply water flooding and different
EOR processes
o Reservoir characterization and screening actual
fields for EOR methods
o How to maximize oil recovery using Mobility Ratio
and Capillary Number
o Chemical EOR: polymer, alkaline-polymer, and
alkaline/surfactant/polymer
o Miscible and thermal EOR techniques and new advancements in EOR techniques

REGISTER

 

Registration is now OPEN!

Ph.D. students, group and early bird registrants are eligible to DISCOUNT!

For more details and registration please send email to: register@petro-teach.com

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