
Petroleum Geology Course
Master the full technical workflow of hydrocarbon exploration, from basin analysis and seismic interpretation to well planning and resource estimation. This course equips geoscience professionals with the rigorous, field-tested skills demanded by the upstream oil and gas industry. Build the expertise to evaluate prospects, reduce drilling risk, and deliver compliant resource reports.
What you will learn:
This course covers the complete hydrocarbon exploration workflow used by professional geoscientists in the upstream industry. You will study petroleum system fundamentals, basin types, and trap geometry before advancing to seismic data acquisition, interpretation, and attribute analysis. Petrophysical evaluation methods will teach you to extract reservoir properties directly from well log data. You will also learn 3D structural and stratigraphic modelling, probabilistic resource estimation, and exploration well planning. Supplementary modules address digital geoscience tools, unconventional plays, remote sensing, and technical reporting standards.
How you study practically Petroleum Geology Course
How you practise Petroleum Geology Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Hydrocarbon Geology
Foundations of Hydrocarbon Geology
Lesson 1 • Trap Geometry and Seal Integrity
Analyses structural and stratigraphic trap types and the caprock properties that retain hydrocarbons. Prepares students to evaluate trap risk.
Lesson 2 • Reservoir Rock Characterization
Covers porosity, permeability, and diagenetic controls on reservoir quality. Connects rock properties to producibility assessments.
Lesson 3 • Petroleum System Fundamentals
Covers the five elements of a petroleum system and their spatial-temporal relationships. Establishes the conceptual framework used throughout the course.
Lesson 4 • Source Rock Geochemistry Basics
Introduces organic matter types, maturity indicators, and generation windows. Provides the geochemical vocabulary needed for later exploration analysis.
Lesson 5 • Basin Types and Tectonic Settings
Examines how tectonic processes create sedimentary basins favourable for hydrocarbon accumulation. Links basin type to exploration risk.
Chapter 2HideHide detailsSee detailsGeological Data Acquisition Methods
Geological Data Acquisition Methods
Lesson 1 • Core and Cutting Analysis
Covers conventional and sidewall coring, sample handling, and laboratory analysis workflows. Links physical samples to log and seismic calibration.
Lesson 2 • Well Logging Fundamentals
Introduces wireline and logging-while-drilling tools and their physical measurement principles. Establishes the basis for petrophysical interpretation.
Lesson 3 • Geochemical Sampling in the Field
Describes surface geochemical surveys, mud-gas logging, and fluid sampling methods. Connects field geochemistry to petroleum system evaluation.
Lesson 4 • Seismic Data Acquisition Principles
Explains 2D and 3D seismic survey design, source types, and receiver arrays. Provides the acquisition context needed to interpret seismic data correctly.
Lesson 5 • Surface Geological Mapping
Teaches field mapping techniques for identifying outcrop analogues and structural trends. Directly supports basin-scale interpretation in later chapters.
Chapter 3HideHide detailsSee detailsSeismic Interpretation for Exploration
Seismic Interpretation for Exploration
Lesson 1 • Stratigraphic Seismic Interpretation
Applies seismic stratigraphy concepts to identify depositional sequences and facies. Supports reservoir prediction away from well control.
Lesson 2 • Structural Interpretation Techniques
Teaches horizon picking, fault interpretation, and time-structure map construction. Builds the structural framework for prospect definition.
Lesson 3 • Seismic Data Processing Overview
Summarises key processing steps that affect interpretation quality. Enables students to recognise processing artefacts and data limitations.
Lesson 4 • Seismic Attribute Analysis
Introduces amplitude, frequency, and coherence attributes for reservoir characterisation. Enhances prospect confidence beyond structural mapping.
Lesson 5 • 3D Seismic Visualisation and Mapping
Covers volume rendering, arbitrary lines, and horizon slices in 3D seismic workstations. Integrates structural and stratigraphic interpretations into prospect maps.
Chapter 4HideHide detailsSee detailsPetrophysical Evaluation of Wells
Petrophysical Evaluation of Wells
Lesson 1 • Petrophysical Model Integration
Combines log-derived properties with core data to build a calibrated petrophysical model. Prepares students for volumetric and static model inputs.
Lesson 2 • Net Pay Determination
Defines cutoff criteria for porosity, saturation, and shale volume to identify producible intervals. Directly impacts volumetric resource estimates.
Lesson 3 • Fluid Saturation Analysis
Applies Archie's equation and its variants to determine water and hydrocarbon saturation. Connects resistivity data to producibility assessment.
Lesson 4 • Porosity Log Interpretation
Teaches density-neutron crossplot analysis and sonic porosity derivation. Directly feeds into net pay and volumetric calculations.
Lesson 5 • Formation Evaluation Workflow
Outlines the systematic steps from raw log data to reservoir characterisation. Provides the procedural framework for all subsequent petrophysical work.
Chapter 5HideHide detailsSee detailsSubsurface Structural and Stratigraphic Modeling
Subsurface Structural and Stratigraphic Modeling
Lesson 1 • Structural Framework Construction
Builds fault networks and horizon surfaces from seismic interpretation into a coherent 3D structural model. Ensures geometric consistency for reservoir modelling.
Lesson 2 • Well Correlation and Stratigraphic Framework
Applies biostratigraphy and log correlation to establish chronostratigraphic surfaces. Creates the stratigraphic backbone for 3D model construction.
Lesson 3 • Facies Modeling Concepts
Introduces deterministic and stochastic facies modelling methods within the structural framework. Links depositional environment interpretation to reservoir geometry.
Lesson 4 • Property Population and Upscaling
Distributes petrophysical properties into the 3D grid and scales them for simulation. Connects the geological model to dynamic reservoir simulation inputs.
Lesson 5 • Model Quality Control and Uncertainty
Applies volumetric checks, well-to-model comparisons, and scenario analysis to validate the model. Prepares students to communicate model uncertainty to stakeholders.
Chapter 6HideHide detailsSee detailsHydrocarbon Resource Estimation
Hydrocarbon Resource Estimation
Lesson 1 • Prospect Risking and Chance of Success
Quantifies geological chance of success by assessing source, reservoir, trap, and seal risk independently. Integrates risk into expected value calculations.
Lesson 2 • Resource Classification Frameworks
Explains internationally recognised resource classification systems and their commercial implications. Provides the definitional basis for all estimation work.
Lesson 3 • Probabilistic Resource Assessment
Uses Monte Carlo simulation to propagate input uncertainties into resource distributions. Produces P10, P50, and P90 estimates for decision support.
Lesson 4 • Recovery Factor Estimation
Determines recovery factors using drive mechanism analysis, analogues, and simulation results. Converts in-place volumes to recoverable reserves.
Lesson 5 • Volumetric In-Place Estimation
Applies the bulk rock volume, net-to-gross, porosity, and saturation equation to calculate STOIIP and GIIP. Directly uses outputs from petrophysical and structural models.
Chapter 7HideHide detailsSee detailsExploration Well Planning and Drilling Geology
Exploration Well Planning and Drilling Geology
Lesson 1 • Drilling Program Geological Input
Covers the geologist's contributions to well design, including casing points, coring intervals, and logging programmes. Links geological objectives to operational planning.
Lesson 2 • Geosteering and Directional Drilling Geology
Applies real-time log data and geological models to steer wells within reservoir targets. Maximises reservoir contact in complex geological settings.
Lesson 3 • Real-Time Wellsite Geology
Teaches cutting description, mud-log monitoring, and formation top recognition during drilling. Enables timely geological decisions at the wellsite.
Lesson 4 • Well Completion and Testing Geology
Covers perforation interval selection, drill stem testing design, and fluid sampling during testing. Connects geological evaluation to production potential assessment.
Lesson 5 • Well Objective and Target Definition
Translates prospect maps and resource estimates into specific well objectives and geological targets. Establishes the technical basis for well design.
Chapter 8HideHide detailsSee detailsExploration Strategy and Play Assessment
Exploration Strategy and Play Assessment
Lesson 1 • Play Concept Development
Defines exploration plays by common source, reservoir, trap, and seal elements. Establishes the play framework for systematic prospect generation.
Lesson 2 • Exploration Portfolio Management
Applies portfolio theory to balance risk and reward across a set of exploration prospects. Supports capital allocation decisions in multi-prospect programmes.
Lesson 3 • Basin Analogy and Benchmarking
Uses global basin analogues to calibrate local geological models and recovery expectations. Reduces uncertainty in frontier and emerging basin assessments.
Lesson 4 • Exploration Decision and Reporting
Structures the geological case for drilling decisions and communicates findings to technical and commercial audiences. Integrates all course competencies into a final deliverable.
Lesson 5 • Prospect Generation and Ranking
Applies geological and geophysical data to generate and rank prospects within a play. Prioritises drilling candidates based on risk-adjusted resource potential.
Your valid completion certificate
This course is for you:
Geology graduates: eager to break into upstream oil and gas roles.
Junior exploration geologists: wanting to close gaps in their technical foundation.
Geophysicists: seeking to broaden skills beyond seismic into full exploration workflows.
Petroleum engineering students: aiming to understand the geological side of exploration.
Career changers from mining or environmental geology: transitioning into hydrocarbon exploration.
Exploration technicians: ready to move into geoscientist-level responsibilities and decisions.
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