Design of deep braced excavation and earth retaining systems under complex built environment : theories and case studies / Wengang Zhang, Hanlong Liu.
2022
TA730 .Z53 2022
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Details
Title
Design of deep braced excavation and earth retaining systems under complex built environment : theories and case studies / Wengang Zhang, Hanlong Liu.
Author
Zhang, Wengang, author.
ISBN
9789811653209 (electronic bk.)
9811653208 (electronic bk.)
9789811653193
9811653194
9811653208 (electronic bk.)
9789811653193
9811653194
Published
Singapore : Springer ; Beijing : Science Press, [2022]
Copyright
©2022
Language
English
Description
1 online resource : illustrations (chiefly color)
Item Number
10.1007/978-981-16-5320-9 doi
Call Number
TA730 .Z53 2022
Dewey Decimal Classification
624.1/52
Summary
This book presents basic design theories and principles and provides detailed analysis for excavation failure cases based on the author's research experience, aiming to provide a comprehensive picture of the subject matter. It focuses on the basal heave stability analysis, the apparent earth pressure as well as the strut force determination, the retaining wall deflection, the ground settlement, the protection measures such as jet grouting slabs or piles, case reports, back analysis methodology. From the very basic to the most advanced, it tries to attain theoretical rigorousness and consistency. On the other hand, this book also tries to cope with design practice, implemented by the recent publications from the authors. Students, researchers, and design engineers working in the field of civil engineering could benefit from this book.
Bibliography, etc. Note
Includes bibliographical references.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed October 5, 2021).
Added Author
Liu, Hanlong, author.
Available in Other Form
Design of deep braced excavation and earth retaining systems under complex built environment.
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Table of Contents
Overview
Basal heave stability
Toe stability
Strut forces
Bending moments
Retaining wall deflections
Ground settlements
Numerical analysis
Soil constitutive models
Dewatering for excavation
Jet grouting and other auxiliary measures
Protection of adjacent buildings
Instrumentation, observation methods and back analysis
Excavation failure cases and analysis.
Basal heave stability
Toe stability
Strut forces
Bending moments
Retaining wall deflections
Ground settlements
Numerical analysis
Soil constitutive models
Dewatering for excavation
Jet grouting and other auxiliary measures
Protection of adjacent buildings
Instrumentation, observation methods and back analysis
Excavation failure cases and analysis.