Geomechanics Fluid Dynamics and Well Testing Applied to Naturally Fractured Carbonate Reservoirs

This book PDF is perfect for those who love Science genre, written by Nelson Enrique Barros Galvis and published by Springer which was released on 02 May 2018 with total hardcover pages 147. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Geomechanics Fluid Dynamics and Well Testing Applied to Naturally Fractured Carbonate Reservoirs books below.

Geomechanics  Fluid Dynamics and Well Testing  Applied to Naturally Fractured Carbonate Reservoirs
Author : Nelson Enrique Barros Galvis
File Size : 45,5 Mb
Publisher : Springer
Language : English
Release Date : 02 May 2018
ISBN : 9783319775012
Pages : 147 pages
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Geomechanics Fluid Dynamics and Well Testing Applied to Naturally Fractured Carbonate Reservoirs by Nelson Enrique Barros Galvis Book PDF Summary

This thesis presents an important step towards a deeper understanding of naturally fractured carbonate reservoirs (NFCRs). It demonstrates the various kinds of discontinuities using geological evidence, mathematical kinematics model and computed tomography and uses this as a basis for proposing a new classification for NFCRs. Additionally, this study takes advantage of rock mechanics theory to illustrate how natural fractures can collapse due to fluid flow and pressure changes in the fractured media. The explanations and mathematical modeling developed in this dissertation can be used as diagnostic tools to predict fluid velocity, fluid flow, tectonic fracture collapse, pressure behavior during reservoir depleting, considering stress-sensitive and non-stress-sensitive, with nonlinear terms in the diffusivity equation applied to NFCRs. Furthermore, the book presents the description of real reservoirs with their field data as the principal goal in the mathematical description of the realistic phenomenology of NFCRs.

Geomechanics  Fluid Dynamics and Well Testing  Applied to Naturally Fractured Carbonate Reservoirs

This thesis presents an important step towards a deeper understanding of naturally fractured carbonate reservoirs (NFCRs). It demonstrates the various kinds of discontinuities using geological evidence, mathematical kinematics model and computed tomography and uses this as a basis for proposing a new classification for NFCRs. Additionally, this study takes advantage

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