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Main Title Dynamic Response and Deformation Characteristic of Saturated Soft Clay under Subway Vehicle Loading [electronic resource] /
Type EBOOK
Author Tang, Yiqun.
Other Authors
Author Title of a Work
Zhou, Jie.
Ren, Xingwei.
Yang, Qi.
Publisher Springer Berlin Heidelberg : Imprint: Springer,
Year Published 2014
Call Number TA703-705.4
ISBN 9783642419874
Subjects Geography ; Civil engineering
Internet Access
Description Access URL
http://dx.doi.org/10.1007/978-3-642-41987-4
Collation XXIII, 241 p. 132 illus., 62 illus. in color. online resource.
Notes Due to license restrictions, this resource is available to EPA employees and authorized contractors only
Contents Notes Introduction.- Field test -- Laboratory tests -- Microstructure of soil -- Theoretical analysis and numerical simulation -- Settlement predictions for soil around subway tunnels. 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.
Place Published Berlin, Heidelberg
Corporate Au Added Ent SpringerLink (Online service)
Title Ser Add Ent Springer Environmental Science and Engineering,
Host Item Entry Springer eBooks
PUB Date Free Form 2014
Series Title Untraced Springer Environmental Science and Engineering,
BIB Level m
Medium computer
Content text
Carrier online resource
Cataloging Source OCLC/T
OCLC Time Stamp 20140108130603
Language eng
Origin SPRINGER
Type EBOOK
OCLC Rec Leader 03024nam a22004815i 45