This is a five-day classroom course using examples, computer exercises, and case studies and discussion.
Participants are required to bring along a PC laptop running Excel or higher with Solver and Data Analysis add-ons. Construct coherent workflows to estimate reservoir properties and associated uncertainties by integrating seismic data with other data types. Apply seismic conditioning methods to maximise bandwidth and optimise correlation with reservoir properties.
Analyse relationships between reservoir and elastic properties to determine what may be estimated from seismic data.
Select the appropriate inversion algorithm for any given situation. Appreciate the importance of uncertainty quantification in seismic reservoir characterisation. Select appropriate methods to achieve the objectives based on an assessment of data quality and an analysis of rock properties and reservoir geometry. Course Content 1. This course is designed for geoscientists who have been working with seismic data for at least five years and who wish to create coherent workflows to achieve specific quantitative objectives.
Participants need a working knowledge of seismic data processing and interpretation, wire-line logging and reservoir geology.
Short Course 7
Background Patrick Connolly is a consultant geophysicist specializing in seismic reservoir characterization. He now runs his own company providing training courses and consultancy and is a visiting lecturer at the University of Leeds, UK. He was also a co-developer of Extended Elastic Impedance now widely used throughout the industry. Our Safety Management Systems ensure that every course is risk managed appropriately to enable quality, safe and enjoyable learning to take place in the field environment.
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During the last 30 years, seismic interpreters routinely have applied bright-spot and AVO technology for recognizing prospects and predicting lithology. New amplitude attributes were added to this technology as new exploration problems were defined.
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With the high interest in reducing exploration risk, this course addresses the methodology of an amplitude interpretation and the subsequent benefits and limitations that one can expect in various rock-property settings. This book begins with a review of the relationships between rock properties and geophysical observations.
Practical problems illustrate the assumptions and limitations of commonly used empirical transforms, and procedures for conducting and verifying fluid-substitution techniques are presented. The book identifies components of the seismic response best suited for differentiating pore fluid from lithologic effects. Field examples emphasize what combination of seismic signatures should be expected for different rock-property environments. To help select the best seismic attribute for calibrating amplitude to rock properties, general rules are provided for predicting AVO responses and interpreting lithology from observed responses.
The seismic velocity model as an interpretation asset - PDF Free Download
A case history also is provided. The last part examines the numerous amplitude attributes that can be extracted from seismic data to quantify an interpretation. Benefits and limitations of these attributes in soft- to hard-rock environments are discussed with model data and in case histories. Review This Product No reviews yet - be the first to create one!
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