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Integrated Geology and Geophysics Program (IGGP2)
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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
- Elements of petroleum system
- Seal rocks types & characteristics.
- Source rocks types & characteristics.
- Reservoir rocks types & characteristics.
- Types of petroleum traps.
- Geostatistics in reservoir characterization
Clastic & carbonate reservoirs
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Continental Environments
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Alluvial Fan Environment
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Fluvial Environment
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Lacustrine Environment
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Aeolian Desert Environment
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Marginal Marine Deltas & Fan Deltas
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Barrier Islands and Costal Environment
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Bars , Cheniers & Costal Environments
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Tidal & Estuary Environments
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Marine Environment
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Continental Shelf
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Continental Slope
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Turbidite Channels& Deep Sea Fans
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Carbonate Environments
- Structural geology & subsurface
mapping
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Plate Tectonics
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Tectonic stress and plate boundaries
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Sources of structural data
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Rigid and non-rigid body deformation
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Strain ellipse, ellipsoid, and strain fields
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Tectonic and non-tectonic stresses
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Folds: Definitions, Descriptive analysis of folds
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Kinematic and dynamic analysis of folds
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Folds to hydrocarbon entrapment
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Types of fractures and faults
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Thrust terminology , Regional tectonic settings
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Normal Faulting: rifts tectonics
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Strike-slip Faulting: Regional tectonic settings, 2nd order wrench structures
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Faulting and Hydrocarbon traps
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Diapiric Structures: Salt tectonics
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diapiric structures and hydrocarbon traps
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Fault Seal Analysis in Exploration
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Contouring techniques
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Different measures of thickness
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Thickness in deviated wells
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Isopach and isocore maps
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Dip-domain cross sections
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Constructing fault-plane maps
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Faults on isopach maps
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Combining fault and horizon maps
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Contouring across faults
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Different types of maps & cross sections.
- Block (3D) Diagram.
Sequence stratigraphy
- Historical framework
- Seismic geometries
- Unconformities
- Relative sea level
- Eustasy
- Parasequences and their stacking patterns
- Parasequences as a correlation tool
- Relationship of stratigraphic patterns to changes in subsidence rates as driven by regional and earth scale tectonic processes
- cycle hierarchy
- 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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