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The editors invited engineers, who are engaged in not only advanced
level geotechnical analyses but also in consulting practice, to
write various chapters of this text. These chapters show that a
blend of engineering judgement and advanced principles of
engineering mechanics may be used to resolve many complex
geotechnical engineering problems. It is hoped that these may
inspire the geotechnical engineering practice to make more
extensive use of them in future. The complex geometrical
configurations as well as enormously difficult materials which
exhibit strongly path dependent mechanical behaviour have required
the development of the advanced computer-based geotechnical
analyses presented in this book. A non-linear transient finite
element formulation is developed for the complex interaction
between fluid and solid skeleton for both static and dynamic
loading. Construction methods (for example: compaction, excavation,
retaining walls or pile driving) which influence the mechanical
behaviour of geotechnical structures are described with
modifications to the finite element formulation. The use of the
finite layer approach is rehearsed for situations where soil
properties do not vary
The chapters in this book show that a careful blend of engineering
judgement and advanced principles of engineering mechanics may be
used to resolve many complex geotechnical engineering problems. It
is hoped that these may inspire the geotechnical engineering
practice to make more extensive use of them in future.
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