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This book focuses on how hydrogeophysical methods can be applied to
solve problems facing environmental engineers, geophysicists,
agronomists, hydrologists, soil scientists and hydrogeologists. We
present applications of hydrogeophysical methods to the
understanding of hydrological processes and environmental problems
dealing with the flow of water and the transport of solutes and
contaminants. The majority of the book is organized as a series of
process-driven chapters, each authored by leading experts. Areas
covered include: infiltration and solute transport processes,
biogeochemical functioning of soil-water systems, coastal
groundwater interactions, cold region hydrology, engineered
barriers and landfill processes. In addition, the book offers
insight into the development of new data fusion methodologies, of
value to many hydrogeophysical investigations.
This book focuses on how hydrogeophysical methods can be applied to
solve problems facing environmental engineers, geophysicists,
agronomists, hydrologists, soil scientists and hydrogeologists. We
present applications of hydrogeophysical methods to the
understanding of hydrological processes and environmental problems
dealing with the flow of water and the transport of solutes and
contaminants. The majority of the book is organized as a series of
process-driven chapters. Areas covered include: infiltration and
solute transport processes, biogeochemical functioning of
soil-water systems, coastal groundwater interactions, cold region
hydrology, engineered barriers & landfill processes. In
addition, the book offers insight into the development of new data
fusion methodologies, of value to many hydrogeophysical
investigations, and provides an account how the rapidly developing
self-potential technique an give valuable information about water
fluxes and hydrochemical states..
The self-potential method enables non-intrusive assessment and
imaging of disturbances in electrical currents of conductive
subsurface materials. It has an increasing number of applications,
from mapping fluid flow in the subsurface of the Earth to detecting
preferential flow paths in earth dams and embankments. This book
provides the first full overview of the fundamental concepts of
this method and its applications in the field. It discusses the
historical perspective, laboratory investigations undertaken, the
inverse problem and seismoelectric coupling, and concludes with the
application of the self-potential method to geohazards, water
resources and hydrothermal systems. Chapter exercises, online
datasets and analytical software enable the reader to put the
theory into practice. This book is a key reference for academic
researchers and professionals working in the areas of geophysics,
environmental science, hydrology and geotechnical engineering. It
will also be valuable reading for related graduate courses.
Translated And Edited By Frank Greene Bates And Paul Emerson
Titsworth.
Translated And Edited By Frank Greene Bates And Paul Emerson
Titsworth.
The self-potential method enables non-intrusive assessment and
imaging of disturbances in electrical currents of conductive
subsurface materials. It has an increasing number of applications,
from mapping fluid flow in the subsurface of the Earth to detecting
preferential flow paths in earth dams and embankments. This book
provides the first full overview of the fundamental concepts of
this method and its applications in the field. It discusses a
historical perspective, laboratory investigations undertaken, the
inverse problem, and seismoelectric coupling, and concludes with
the application of the self-potential method to geohazards, water
resources and hydrothermal systems. Chapter exercises and online
datasets and analytical software enable the reader to put the
theory in practice. This book is a key reference for academic
researchers and professionals working in the areas of geophysics,
environmental science, hydrology, and geotechnical engineering. It
will also be valuable reading for related graduate courses.
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