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Mathematical Models and Finite Elements for Reservoir Simulation: Single Phase, Multiphase and Multicomponent Flows Through Porous Media (Studies in Mathematics & Its Applications)
Mathematical Models and Finite Elements for Reservoir Simulation: Single Phase, Multiphase and Multicomponent Flows Through Porous Media (Studies in Mathematics & Its Applications)
Date: 23 May 2011, 04:43
PREFACE
During the last twenty years, many numerical simulators for oil reservoirs have been developed.
They are now widely used by the oil companies and they include refined physical
and thermodynamical effects. However, this research has taken place primarily within the
oil companies, and has been thus somewhat inaccessible to the scientific community. The
obstacle to communication has not been any kind of confidentiality, but has rather come
from the specialized language used in the oil industry, together with an increasing complexity
of the physical models underlying the numerical simulators.
So one aim of this book is to try to remedy t h i s situation and make the models used in reservoir
simulation understandable by the non-specialized scientific community. By understandable
we mean not only that the models can be recognized by the mathematical
reader as being of a known type of equation, but also that the physical effects corresponding
to each term are well identified. This goal is achieved by using a synthetic presentation
of all models using the new feature of the ‘global pressure’, which enables us to write
all models in the form of one pressure equation coupled with one or several saturation or
concentration equations.

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