This book discusses topical issues of detailed seismic data interpretation using high-resolution seismic (HRS) techniques, which are based on the numerical method developed by the authors for solving the inverse dynamic seismic problem (IDSP). The authors highlight the range of issues related to the development and application of HRS-Geo technologies on a variety of seismic data, and analyze a significant amount of practical material in various seismic and geological conditions. This analysis allows for the accurate estimation of geological indicators in sediments that are most important for the prediction and exploration of oil and gas deposits, including lithological composition, reservoir properties, and the nature and degree of reservoir rock saturation with fluids. The book is intended for professionals involved in seismic data processing and geological interpretation, students of geophysical and geological specialties, graduate students of these specializations.
This book outlines the scientific, methodological and practical foundations for applying High Resolution Seismic HRS-Geo Technology in order to build detailed 2D and 3D seismic acoustic models in the form of acoustic impedances (AI) and reflection coefficients (RC) and the most important geological indicators. The monograph is a continuation of the book by the same authors "Oil and Gas Reservoir Prospecting and Exploration: High-Resolution Seismic HRS techniques and technology". Particular attention is paid to improving the process of searching for AI and RC models using the vector of objective functions, in which various types of residuals between real and model data are iteratively calculated. The well-known criteria for predicting the oil and gas potential of productive deposits from the standpoint of the system analysis principles and the set of geological indicators found from the HRS data are analyzed. The features of solving the main seismogeological problems using HRS-Geo Technology modules are shown, illustrated by numerous examples, and using a special (optimal) processing graph and a set of additional seismic record regularization procedures that provide maximum detail of high-resolution seismic data. The book is meant for scientists and specialists involved in in-depth complex geological interpretation of seismic data in the search and exploration of oil and gas deposits, as well as students of geophysical and geological specialties, graduate students of these specializations and developers.
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