COURSE OVERVIEW
DE0387 : Integrated Petrophysics for Carbonate & Fractured Reservoirs - A Roadmap
OVERVIEW
COURSE TITLE | : | DE0387 : Integrated Petrophysics for Carbonate & Fractured Reservoirs - A Roadmap |
COURSE DATE | : | Nov 02 - Nov 06 2024 |
DURATION | : | 5 Days |
INSTRUCTOR | : | Dr. Chris Kapetan |
VENUE | : | Doha, Qatar |
COURSE FEE | : | $ 8500 |
Request For Course Outline |
OTHER SCHEDULED DATES
Date | : | Apr 21 - Apr 25 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 8500 | Course Info |
Date | : | May 26 - May 30 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 8500 | Course Info |
Date | : | Sep 22 - Sep 26 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 8500 | Course Info |
Course Description
This practical and highly-interactive course includes real-life case studies and exercises where participants will be engaged in a series of interactive small groups and class workshops. This course is designed to provide participants with a detailed and up-to-date overview of Integrated Petrophysics for Carbonate & Fractured Reservoirs. It covers the characteristics, importance and global distribution of carbonate and fractured reservoirs; the geological characteristics of carbonate reservoirs; the types, formation mechanisms and impacts of fractured reservoirs; and the petrophysical properties of carbonate rocks. Further, the course will also discuss the basic tools and techniques in petrophysical analysis; the challenges in petrophysical evaluation of carbonate and fractured reservoirs; the log interpretation in carbonate settings, advanced logging tools applicable to carbonates and quantitative evaluation of porosity and permeability; and the fluid typing and saturation analysis and integration of core and log data and characterizing fractures.
During this interactive course, participants will learn the petrophysical modeling of fractured reservoirs; the fracture porosity and permeability estimation; the role of geomechanics in understanding fractured reservoirs; the well test interpretation in fractured reservoirs; the integrated geological models, reservoir characterization and zonation; upscaling petrophysical data for reservoir simulation; the uncertainty analysis in petrophysical interpretation; the advanced software tools and techniques and field development strategies for carbonate and fractured reservoirs; the enhanced oil recovery (EOR) in complex reservoirs and carbon capture and storage (CCS) in carbonates and fractures; and the emerging technologies and innovations in petrophysics and best practices and workflow optimization.
link to course overview PDF
During this interactive course, participants will learn the petrophysical modeling of fractured reservoirs; the fracture porosity and permeability estimation; the role of geomechanics in understanding fractured reservoirs; the well test interpretation in fractured reservoirs; the integrated geological models, reservoir characterization and zonation; upscaling petrophysical data for reservoir simulation; the uncertainty analysis in petrophysical interpretation; the advanced software tools and techniques and field development strategies for carbonate and fractured reservoirs; the enhanced oil recovery (EOR) in complex reservoirs and carbon capture and storage (CCS) in carbonates and fractures; and the emerging technologies and innovations in petrophysics and best practices and workflow optimization.
TRAINING METHODOLOGY
This interactive training course includes the following training methodologies:
LecturesWorkshops & Work Presentations
Case Studies & Practical Exercises
Videos, Software & Simulators
In an unlikely event, the course instructor may modify the above training methodology for technical reasons.
VIRTUAL TRAINING (IF APPLICABLE)
If this course is delivered online as a Virtual Training, the following limitations will be applicable:
Certificates | : | Only soft copy certificates will be issued |
Training Materials | : | Only soft copy materials will be issued |
Training Methodology | : | 80% theory, 20% practical |
Training Program | : | 4 hours per day, from 09:30 to 13:30 |
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