Investigations of multi-physical processes in geomaterials have
gained increasing attention due to the ongoing interest in solving
complex geoenvironmental problems. This book provides a
comprehensive exposition of the classical theory of
thermo-poroelasticity, complemented by complete examples to
problems in thermo-poromechanics that are used to validate
computational results from multi-physics codes used in practice.
The methodologies offer an insight into real-life problems related
to modern environmental geosciences, including nuclear waste
management, geologic sequestration of greenhouse gases to mitigate
climate change, and the impact of energy resources recovery on
groundwater resources. A strong focus is placed on analytical
approaches to benchmark the accuracy of the computational
approaches that are ultimately used in real-life problems. The
extensive coverage of both theory and applications in
thermo-poroelasticity and geomechanics provides a unified
presentation of the topics, making this an accessible and
invaluable resource for researchers, students or practitioners in
the field.
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