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Sustainable Natural Gas Reservoir and Production Engineering, the
latest release in The Fundamentals and Sustainable Advances in
Natural Gas Science and Engineering series, delivers many of the
scientific fundamentals needed in the natural gas industry,
including improving gas recovery, simulation processes for
fracturing methods, and methods for optimizing production
strategies. Advanced research covered includes machine learning
applications, gas fracturing mechanics aimed at reducing
environmental impact, and enhanced oil recovery technologies aimed
at capturing carbon dioxide. Supported by corporate and academic
contributors along with two well-distinguished editors, this book
provides today's natural gas engineers the fundamentals and
advances in a convenient resource
Sustainable Geoscience for Natural Gas SubSurface Systems delivers
many of the scientific fundamentals needed in the natural gas
industry, including coal-seam gas reservoir characterization and
fracture analysis modeling for shale and tight gas reservoirs.
Advanced research includes machine learning applications for well
log and facies analysis, 3D gas property geological modeling, and
X-ray CT scanning to reduce environmental hazards. Supported by
corporate and academic contributors, along with two
well-distinguished editors, the book gives today's natural gas
engineers both fundamentals and advances in a convenient resource,
with a zero-carbon future in mind.
This important resource explores recent theoretical advances and
modelling on fluids transport in fractal porous systems and
presents a systematic understanding of the characterization of
complex microstructure and transport mechanism in fractal porous
media. Modelling of Flow and Transport in Fractal Porous Media
shows how fractal theory and technology, combined with other modern
experiments and numerical simulation methods, will assist
researchers and practitioners in modelling of transport properties
of fractal porous media, such as fluid flow, heat and mass
transfer, mechanical characteristics, and electrical conductivity.
Petrophysical Characterization and Fluids Transport in
Unconventional Reservoirs presents a comprehensive look at these
new methods and technologies for the petrophysical characterization
of unconventional reservoirs, including recent theoretical advances
and modeling on fluids transport in unconventional reservoirs. The
book is a valuable tool for geoscientists and engineers working in
academia and industry. Many novel technologies and approaches,
including petrophysics, multi-scale modelling, rock reconstruction
and upscaling approaches are discussed, along with the challenge of
the development of unconventional reservoirs and the mechanism of
multi-phase/multi-scale flow and transport in these structures.
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