The author coherently presents the physical concepts, mathematical details and methodology for optimizing results of reservoir modeling, under conditions of isotropy and anisotropy. The most common form of anisotropy the transverse isotropy, is dealt with in detail. Besides, practical aspects in reservoir engineering such as interval isotropic or anisotropic properties of layered media; identifying lithology, pore-fluid types and saturation; and determining crack/fracture-orientations and density - form the core of discussions. This book incorporates significant new developments in...
The author coherently presents the physical concepts, mathematical details and methodology for optimizing results of reservoir modeling, under cond...
The author coherently presents the physical concepts, mathematical details and methodology for optimizing results of reservoir modeling, under conditions of isotropy and anisotropy. The most common form of anisotropy the transverse isotropy, is dealt with in detail. Besides, practical aspects in reservoir engineering such as interval isotropic or anisotropic properties of layered media; identifying lithology, pore-fluid types and saturation; and determining crack/fracture-orientations and density - form the core of discussions. This book incorporates significant new developments in...
The author coherently presents the physical concepts, mathematical details and methodology for optimizing results of reservoir modeling, under cond...