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Integrating information from several areas of engineering geology,
hydrogeology, geotechnical engineering, this book addresses the
general field of groundwater from an engineering perspective. It
covers geological engineering as well as hydrogeological and
environmental geological problems caused by groundwater
engineering. It includes 10 chapters, i.e., basic groundwater
theory, parameter calculation in hydrogeology, prevention of
geological problem caused by groundwater, construction dewatering,
wellpoint dewatering methods, dewatering wells and drilling,
groundwater dewatering in foundation-pit engineering, groundwater
engineering in bedrock areas, numerical simulation in groundwater
engineering, groundwater corrosion on concrete and steel. Based on
up-to-date literature, it describes recent developments and
presents several case studies with examples and problems. It is an
essential reference source for industrial and academic researchers
working in the groundwater field and can also serve as
lecture-based course material providing fundamental information and
practical tools for both senior undergraduate and postgraduate
students in fields of geology engineering, hydrogeology,
geotechnical engineering or to conduct related research.
Integrating information from several areas of engineering geology,
hydrogeology, geotechnical engineering, this book addresses the
general field of groundwater from an engineering perspective. It
covers geological engineering as well as hydrogeological and
environmental geological problems caused by groundwater
engineering. It includes 10 chapters, i.e., basic groundwater
theory, parameter calculation in hydrogeology, prevention of
geological problem caused by groundwater, construction dewatering,
wellpoint dewatering methods, dewatering wells and drilling,
groundwater dewatering in foundation-pit engineering, groundwater
engineering in bedrock areas, numerical simulation in groundwater
engineering, groundwater corrosion on concrete and steel. Based on
up-to-date literature, it describes recent developments and
presents several case studies with examples and problems. It is an
essential reference source for industrial and academic researchers
working in the groundwater field and can also serve as
lecture-based course material providing fundamental information and
practical tools for both senior undergraduate and postgraduate
students in fields of geology engineering, hydrogeology,
geotechnical engineering or to conduct related research.
Involving several areas of geological engineering, geotechnical
engineering and tunnel engineering, this book describes the soft
soil deformation characteristics and dynamic responses induced by
subway vibration load. Based on field monitoring and laboratory
testing data, with both comprehensive micro-and macroanalysis, the
authors present dynamic characteristics and deformation settlement
of saturated soft clay surrounding subway tunnels using dynamic and
static methodology. Mechanism of deformation, failure in
microstructure of soft clay soil, dynamic response, macro
deformation and settlement are all discussed and analyzed
thoroughly and systematically. Some of the research findings in
this book have been widely applied by large subway companies and
will have broader application prospects in future. All the above
make this book a valuable reference not only for technical
engineers working in subway design or construction but also for
advanced graduate students. Prof. Yiqun Tang works at the
Department of Geotechnical Engineering, Tongji University,
Shanghai, China.
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