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course | Integrated Petrophysics for Reservoir Characterisation IPRC (PPH02)

Boost your profile through Integrated Petrophysics for Reservoir Characterisation IPRC (PPH02). Expert trainers, practical exercises, and recognized

OGC-1616 | Integrated Petrophysics for Reservoir Characterisation IPRC (PPH02)

Course Sector : Oil, Gas and Chemical

Duration
Date from
Date to Course Venue Course fees Book a course
5 Days20/09/202624/09/2026Cairo$4,250 Book now
5 Days09/11/202613/11/2026Abu Dhabi$4,250 Book now
5 Days29/03/202702/04/2027Madrid$4,950 Book now
5 Days05/07/202709/07/2027Dubai$4,250 Book now

Course Introduction

This training course is designed for petrophysicists, geologists, and engineers who work with log data, core data, and production data to develop facies and rock types for reservoir modeling. Building synergy between these disciplines is key to improving workflow efficiency and reducing risks during well planning.
 

 Participants will learn how to utilize various data sources to support petrophysical and geological analysis of both historical and recent wells. They will develop skills to create reliable facies schemes and rock types that reservoir engineers can use for history matching. The course also focuses on understanding fractures—determining their significance and evaluating scenarios for either avoiding or developing fracture plays. Participants will gain the ability to handle different sedimentary models, various rock types, and the tools required to acquire accurate data. They will also learn to analyze multiple log types to identify facies and fractures and choose the best workflow for deriving rock types.
 

Training Course Methodology 

 

This course is designed to be interactive and participatory, and includes various learning tools to enable the participants to function effectively and efficiently. The course will use sessions, exercises, case applications, and presentations about proven-by-practice methods, new insights, and ideas about the topic and its effects in the corporate world.


Course objective

  • Understand various facies models and their sedimentary environments.
  • Develop petrophysical rock types that align with geological settings.
  • Identify and classify different rock types.
  • Design tool strings essential for accurate data acquisition in facies modeling.
  • Analyze historical and recent data to detect and evaluate fractures.

Course audience

  • Reservoir and petroleum engineers
  • Geoscientists and petrophysicists
  • Exploration and production professionals
  • Data analysts in subsurface evaluation
  • Oil and gas field development specialists

Course Outline | 01 Day One

The Reservoir from the Overview of the Geological Framework
 

  • Different types of plays, facies models, and their key petrophysical parameters
  • Know the reservoir from a sedimentological/field point of view
  • Study facies models
  • Look at the present day and out crop analogues
  • Define carbonate rock classification and structure
  • Look at carbonate modern and outcrop examples

Course Outline | 02 Day Two

Basic (Conventional) Core Analysis – Facies, Porosity, Permeability, MCIP, and Borehole Image Analysis 
 

  • Define reservoir characterization
  • Define porosity and permeability
  • Explore the relationship between facies and porosit,y and permeability
  • Understand thin sections, core, and MCIP data and their application
  • Utilization of facies derived from core and mud logs
  • Introduction to borehole images and electrofacies

Course Outline | 03 Day Three

Petrophysical Rock Types, Facies and Cross Plots, Look at the Data from Historical Log Data to the Latest Technology NMR, ECS, Sonic Scanner 
 

  • Understanding different methods of Rock Typing in clastics
  • Understanding different methods of rock typing in carbonates
  • Combining petrophysical cross-plots and facies
  • Understanding advanced petrophysical logs
  • Integrating petrophysical parameters

Course Outline | 04 Day Four

Introduce Petrophysical, Geological, and Reservoir Engineering Rock Types and Flow Units 
 

  • Understanding different flow units
  • Designing rock typing workflows to honor geological data
  • Creating robust facies for the geological model
  • Principles of upscaling
  • Incorporating production data into reservoir characterisation
  • Impact of different completion designs on production

Course Outline | 05 Day Five

Introduction to Fractures and the Geological Model 
 

  • Introduction to fractures
  • Recognizing fractures from core
  • Identifying fractures from borehole images
  • Locating fractures on mudlogs, openhole logs, and production data
  • Impact of fractures on the geological model
Course Certificates
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BOOST’s Professional Attendance Certificate “BPAC”

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.

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