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This book presents guidelines for the design, operation and
monitoring of CO2 injection in fractured carbonates, with low
permeability in the rock matrix, for geological storage in
permanent trapping. CO2 migration is dominated by fractures in
formations where the hydrodynamic and geochemical effects induced
by the injection play a key role influencing the reservoir
behavior. CO2 injection in these rocks shows specific
characteristics that are different to injection in porous media, as
the results from several research studies worldwide reveal. All
aspects of a project of this type are discussed in this text, from
the drilling to the injection, as well as support works like well
logging, laboratory and field tests, modeling, and risk assessment.
Examples are provided, lesson learned is detailed, and conclusions
are drawn. This work is derived from the experience of
international research teams and particularly from that gained
during the design, construction and operation of Hontomin
Technology Development Plant. Hontomin research pilot is currently
the only active onshore injection site in the European Union,
operated by Fundacion Ciudad de la Energia-CIUDEN F.S.P. and
recognized by the European Parliament as a key test facility. The
authors provide guidelines and tools to enable readers to find
solutions to their problems. The book covers activities relevant to
a wide range of practitioners involved in reservoir exploration,
modeling, site operation and monitoring. Fluid injection in
fractured media shows specific features that are different than
injection in porous media, influencing the reservoir behavior and
defining conditions for safe and efficient operation. Therefore,
this book is also useful to professionals working on oil & gas,
hydrogeology and geothermal projects, and in general for those
whose work is related to activities using fluid injection in the
ground.
This book presents guidelines for the design, operation and
monitoring of CO2 injection in fractured carbonates, with low
permeability in the rock matrix, for geological storage in
permanent trapping. CO2 migration is dominated by fractures in
formations where the hydrodynamic and geochemical effects induced
by the injection play a key role influencing the reservoir
behavior. CO2 injection in these rocks shows specific
characteristics that are different to injection in porous media, as
the results from several research studies worldwide reveal. All
aspects of a project of this type are discussed in this text, from
the drilling to the injection, as well as support works like well
logging, laboratory and field tests, modeling, and risk assessment.
Examples are provided, lesson learned is detailed, and conclusions
are drawn. This work is derived from the experience of
international research teams and particularly from that gained
during the design, construction and operation of Hontomin
Technology Development Plant. Hontomin research pilot is currently
the only active onshore injection site in the European Union,
operated by Fundacion Ciudad de la Energia-CIUDEN F.S.P. and
recognized by the European Parliament as a key test facility. The
authors provide guidelines and tools to enable readers to find
solutions to their problems. The book covers activities relevant to
a wide range of practitioners involved in reservoir exploration,
modeling, site operation and monitoring. Fluid injection in
fractured media shows specific features that are different than
injection in porous media, influencing the reservoir behavior and
defining conditions for safe and efficient operation. Therefore,
this book is also useful to professionals working on oil & gas,
hydrogeology and geothermal projects, and in general for those
whose work is related to activities using fluid injection in the
ground.
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