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GEO 123

3D Printing for Geological Data

Rock Physics plays an important role in the oil and gas industry by providing the physical links between seismic signatures such as amplitudes, AVO, and impedances, and the rock and fluid properties of the reservoir.

COURSE SCHEDULE

Code Date Location price (€)*
GEO 123 4 – 5 Mar 2025 Online 990
GEO 123 7 – 8 Jul 2025 Online 990
GEO 123 5 – 6 Feb 2025 Istanbul 1990
GEO 123 2 – 3 Apr 2025 Oslo 1990

* Prices are subject to VAT and local terms. Ph.D. students, groups (≥ 3 persons) and early bird registrants (8 weeks in advance) are entitled to a DISCOUNT!

COURSE OVERVIEW

Rock Physics plays an important role in the oil and gas industry by providing the physical links between seismic signatures such as amplitudes, AVO, and impedances, and the rock and fluid properties of the reservoir. Professor Mukerji  offers this 5-day course for those who want to be more familiar with how to apply rock physics models for seismic reservoir characterization and uncertainty quantification.

This course covers fundamentals of Rock Physics ranging from basic laboratory and theoretical results to practical “recipes” that can be immediately applied in the field.  We will present quantitative tools for understanding and predicting diagnostic seismic signatures of deposition, diagenesis, lithology, pore fluid saturation, stress, pore pressure and temperature, and fractures. We will present case studies and strategies for quantitative seismic interpretation and, suggestions for more effectively employing seismic-to-rock properties transforms in reservoir characterization and monitoring, with emphasis on seismic interpretation and uncertainty quantification for lithology and subsurface fluid detection. The course is recommended for all geophysicists, reservoir geologists, seismic interpreters, and engineers concerned with reservoir characterization, reservoir delineation, hydrocarbon detection, reservoir development and recovery monitoring.

COURSE OUTLINE

5 days
Day 1

  o Introduction to Rock Physics, motivation, introductory examples
  o Parameters that influence seismic velocities – Conceptual Overview
effects of fluids, stress, pore pressure, temperature, porosity, fractures

Day 2

  o   Bounding methods for robust modeling of seismic velocities
  o    Effective media models for elastic properties of rocks

Day 3

    o   Gassmann Fluid substitution – uses, abuses, and pitfalls
derivation, recipe and examples, useful approximations
      o   Partial saturation and the relation of velocities to reservoir processes
      o   The importance of saturation scales and their effect on seismic velocity

Day 4

 o Shaly sands and their seismic signatures
 o Granular media models, unconsolidated sand model, cemented sand model
 o Velocity dispersion and attenuation; Velocity Upscaling

Day 5

o Rock Physics of AVO interpretation and Vp/Vs relations
 o Quantitative seismic interpretation, uncertainty, and rock physics templates.
 o Example case studies using AVO and seismic impedance for quantitative reservoir characterization
 o Rock physics and Bayesian machine learning applications

INSTRUCTOR

Professor Tapan Mukerji

Professor Tapan Mukerji

FAQ

DESIGNED FOR

Geophysicists, Reservoir Geologists, Seismic interpreters, and Engineers concerned with seismic chaarcterization using rock physics.

COURSE LEVEL

 o  Intermediate to Advance

LEARNING OBJECTIVES

After completing this course, participants will be familiar with the following:-Use rock physics models for quantitative seismic interpretation
-Model the effects of fluids on seismic amplitudes and AVO
-Use statistical rock physics and Bayesian machine learning for lithofacies prediction

REGISTER

Registration is now OPEN!

* Prices are subject to VAT and local terms. Ph.D. students, groups (≥ 3 persons) and early bird registrants (8 weeks in advance) are entitled to a DISCOUNT!

For more details and registration please send email to: register@petro-teach.com

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