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Soil Testing, Soil Stability and Gro...
~
Varaksin, Serge.
Soil Testing, Soil Stability and Ground Improvement = Proceedings of the 1st GeoMEast International Congress and Exhibition, Egypt 2017 on Sustainable Civil Infrastructures /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Soil Testing, Soil Stability and Ground Improvement/ edited by Wissem Frikha, Serge Varaksin, Antonio Viana da Fonseca.
Reminder of title:
Proceedings of the 1st GeoMEast International Congress and Exhibition, Egypt 2017 on Sustainable Civil Infrastructures /
other author:
Frikha, Wissem.
Description:
X, 410 p. 293 illus.online resource. :
Contained By:
Springer Nature eBook
Subject:
Geotechnical engineering. -
Online resource:
https://doi.org/10.1007/978-3-319-61902-6
ISBN:
9783319619026
Soil Testing, Soil Stability and Ground Improvement = Proceedings of the 1st GeoMEast International Congress and Exhibition, Egypt 2017 on Sustainable Civil Infrastructures /
Soil Testing, Soil Stability and Ground Improvement
Proceedings of the 1st GeoMEast International Congress and Exhibition, Egypt 2017 on Sustainable Civil Infrastructures /[electronic resource] :edited by Wissem Frikha, Serge Varaksin, Antonio Viana da Fonseca. - 1st ed. 2018. - X, 410 p. 293 illus.online resource. - Sustainable Civil Infrastructures,2366-3405. - Sustainable Civil Infrastructures,.
1 STUDY OF SLOPE STABILITY (OPEN PIT MINING, ALGERIA) -- 2 Prediction of Drained Settlement and Ultimate Bearing Capacity for Stone Columns Supported Foundation -- 3 Considerations on the stiffness of Sensitive Soft Soils -- 4 A novel field device for the measurement of soil collapsibility -- 5 Moisture Variation in Expansive Subgrade through Field Instrumentation and Geophysical Testing.
Earthwork projects are critical components in civil construction and often require detailed management techniques and unique solution methods to address failures. Being earth bound, earthwork is influenced by geomaterial properties at the onset of a project. Hence, an understanding of the in-situ soil properties is essential. Slope stability is a common problem facing earthwork construction, such as excavations and shored structures. Analytical methods for slope stability remain critical for researchers due to the mechanical complexity of the system. Striving for better earthwork project managements, the geotechnical engineering community continues to find improved testing techniques for determining sensitive properties of soil and rock, including stress-wave based, non-destructive testing methods. To minimize failure during earthwork construction, past case studies and data may reveal useful lessons and information to improve project management and minimize economic losses. This volume is part of the proceedings of the 1st GeoMEast International Congress and Exhibition on Sustainable Civil Infrastructures, Egypt 2017.
ISBN: 9783319619026
Standard No.: 10.1007/978-3-319-61902-6doiSubjects--Topical Terms:
1024219
Geotechnical engineering.
LC Class. No.: TA703-705.4
Dewey Class. No.: 624.151
Soil Testing, Soil Stability and Ground Improvement = Proceedings of the 1st GeoMEast International Congress and Exhibition, Egypt 2017 on Sustainable Civil Infrastructures /
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1 STUDY OF SLOPE STABILITY (OPEN PIT MINING, ALGERIA) -- 2 Prediction of Drained Settlement and Ultimate Bearing Capacity for Stone Columns Supported Foundation -- 3 Considerations on the stiffness of Sensitive Soft Soils -- 4 A novel field device for the measurement of soil collapsibility -- 5 Moisture Variation in Expansive Subgrade through Field Instrumentation and Geophysical Testing.
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Earthwork projects are critical components in civil construction and often require detailed management techniques and unique solution methods to address failures. Being earth bound, earthwork is influenced by geomaterial properties at the onset of a project. Hence, an understanding of the in-situ soil properties is essential. Slope stability is a common problem facing earthwork construction, such as excavations and shored structures. Analytical methods for slope stability remain critical for researchers due to the mechanical complexity of the system. Striving for better earthwork project managements, the geotechnical engineering community continues to find improved testing techniques for determining sensitive properties of soil and rock, including stress-wave based, non-destructive testing methods. To minimize failure during earthwork construction, past case studies and data may reveal useful lessons and information to improve project management and minimize economic losses. This volume is part of the proceedings of the 1st GeoMEast International Congress and Exhibition on Sustainable Civil Infrastructures, Egypt 2017.
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