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Integrated Geology and Geophysics Program (IGGP2)
Programs Objectives

The program designed for all exploration & production team members and leaders including geologists, geophysicists, geochemists, analysts, reservoir engineers, economists, planners and managers who make business decisions based upon exploration data . 
The Program divided into 2 Main parts.

1st part is  theoritical part  : 4 Weeks 
 
•  These four weeks geological orientation will be a good first step for your company team from which they can proceed rapidly through their work, through this intensive courses they'll gain a sufficient knowledge about sedimentology, stratigraphy, structural geology , petroleum geology & reservoir mapping in a simple language with good technical excercises to apply the course modules.

Petroleum geology
  1.  Elements of petroleum system
  2.  Seal rocks types & characteristics.
  3.  Source rocks types & characteristics.
  4.  Reservoir rocks types & characteristics.
  5.  Types of petroleum traps.
  6.  Geostatistics in reservoir characterization

Clastic & carbonate reservoirs
  1. Continental Environments 
  2. Alluvial Fan Environment 
  3. Fluvial Environment 
  4. Lacustrine Environment 
  5. Aeolian Desert Environment 
  6. Marginal Marine Deltas & Fan Deltas 
  7. Barrier Islands and Costal Environment 
  8. Bars , Cheniers & Costal Environments 
  9. Tidal & Estuary Environments 
  10. Marine Environment
  11. Continental Shelf 
  12. Continental Slope
  13.  Turbidite Channels& Deep Sea Fans 
  14. Carbonate Environments
  • Structural geology & subsurface
    mapping
  1.  Plate Tectonics
  2.  Tectonic stress and plate boundaries
  3. Sources of structural data
  4.  Rigid and non-rigid body deformation
  5.  Strain ellipse, ellipsoid, and strain fields
  6.  Tectonic and non-tectonic stresses
  7.  Folds: Definitions, Descriptive analysis of folds
  8. Kinematic and dynamic analysis of folds
  9. Folds to hydrocarbon entrapment
  10. Types of fractures and faults
  11. Thrust terminology , Regional tectonic settings
  12.  Normal Faulting: rifts tectonics
  13. Strike-slip Faulting: Regional tectonic settings, 2nd order wrench structures
  14. Faulting and Hydrocarbon traps
  15. Diapiric Structures: Salt tectonics
  16.  diapiric structures and hydrocarbon traps
  17. Fault Seal Analysis in Exploration
  18.  Contouring techniques
  19.  Different measures of thickness
  20. Thickness in deviated wells
  21. Isopach and isocore maps
  22.  Dip-domain cross sections
  23.  Constructing fault-plane maps
  24. Faults on isopach maps
  25.  Combining fault and horizon maps
  26. Contouring across faults
  27. Different types of maps & cross sections.
  28. Block (3D) Diagram.
Sequence stratigraphy
  1.  Historical framework
  2. Seismic geometries 
  3. Unconformities
  4. Relative sea level 
  5. Eustasy
  6. Parasequences and their stacking patterns 
  7. Parasequences as a correlation tool
  8. Relationship of stratigraphic patterns to changes in subsidence rates as driven by regional and earth scale tectonic processes
  9.  cycle hierarchy 
  10. LST sequence boundaries, diagenesis related to unconformities, incised valleys, slope fans, basin floor fans and prograding complexes illustrated by slide presentation and individual exercises.
2nd Part Practical Part :

 
Petrel workshop  2week:

This two weeks course will give a good introduction about subsurface modeling using petrel in which we will discover all it's modules & functions followed by practical case study beside this software knowledge we will be able to understand the terms of deterministic & stochastic models. Then a case study for your own data will used to practise all skills behind the software.
Proposed Field Trip W.D ( 1Week ) 

 
In summary the following points intended to examine: 
 

• Geometry of the Bahariya non-marine reservoir facies and petrology.
• Fault geometry and style on various scales
• The transpressional structural features of the Syrian Arc orogenic event.
• The lithological and facies parameters for different stratigraphic units and their reflection on the logging parameters of their subsurface counterparts.
• The distribution of large and small scales faults within fault blocks.
• Volcanics impacts and fault seal through shale smearing, mineralization and cataclasis and outline their significances.
 








 





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