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Landslides in sensitive clays = from...
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Thakur, Vikas.
Landslides in sensitive clays = from research to implementation /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Landslides in sensitive clays/ edited by Vikas Thakur, Jean-Sebastien L'Heureux, Ariane Locat.
其他題名:
from research to implementation /
其他作者:
Thakur, Vikas.
出版者:
Cham :Springer International Publishing : : 2017.,
面頁冊數:
xix, 603 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
標題:
Landslides. -
電子資源:
http://dx.doi.org/10.1007/978-3-319-56487-6
ISBN:
9783319564876
Landslides in sensitive clays = from research to implementation /
Landslides in sensitive clays
from research to implementation /[electronic resource] :edited by Vikas Thakur, Jean-Sebastien L'Heureux, Ariane Locat. - Cham :Springer International Publishing :2017. - xix, 603 p. :ill., digital ;24 cm. - Advances in natural and technological hazards research,v.461878-9897 ;. - Advances in natural and technological hazards research ;v.31..
This book gathers the most recent scientific research on the geological, geotechnical and geophysical aspects of slope failure in sensitive clays. Gathering contributions by international experts, it focuses on understanding the complete and practical spectrum of challenges presented by landslides in such complex materials. Based on sound and validated research results, the book also presents several recommendations that could be implemented in the guidelines or code-of-practice. These recommendations cover topics including the characterization and behavior of sensitive clays; the pre-failure, failure and post-failure stages of sensitive clays; mapping and identification methods; climate change; hazard assessment; and risk management. Sensitive clays are known for their potential for causing large landslides, which pose a serious risk to human lives, infrastructure, and surrounding ecosystems within their reach. This has been demonstrated by the recent catastrophic landslides in e.g. Sorum (2016), Skjeggestad (2015), Statland (2014), Byneset (2012), St-Jude (2010), Lyngen (2010) and Kattmarka (2009) The 2015 collapse of the Skjeggestad Bridge in Norway - which was due to a landslide in sensitive clay - alone costs millions of dollars in repairs. Recently, efforts are being made to increase society's ability to cope with such landslide hazards. Geoscientists are now expected to provide input to the agencies responsible for landslide-risk preparedness. In other words, geoscientists' role is not only to act as technologists to establish new theories, but also to go the extra mile to implement them in practice, so as to find meaningful solutions to geotechnical problems.
ISBN: 9783319564876
Standard No.: 10.1007/978-3-319-56487-6doiSubjects--Topical Terms:
970813
Landslides.
LC Class. No.: QE599.A2
Dewey Class. No.: 551.307
Landslides in sensitive clays = from research to implementation /
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This book gathers the most recent scientific research on the geological, geotechnical and geophysical aspects of slope failure in sensitive clays. Gathering contributions by international experts, it focuses on understanding the complete and practical spectrum of challenges presented by landslides in such complex materials. Based on sound and validated research results, the book also presents several recommendations that could be implemented in the guidelines or code-of-practice. These recommendations cover topics including the characterization and behavior of sensitive clays; the pre-failure, failure and post-failure stages of sensitive clays; mapping and identification methods; climate change; hazard assessment; and risk management. Sensitive clays are known for their potential for causing large landslides, which pose a serious risk to human lives, infrastructure, and surrounding ecosystems within their reach. This has been demonstrated by the recent catastrophic landslides in e.g. Sorum (2016), Skjeggestad (2015), Statland (2014), Byneset (2012), St-Jude (2010), Lyngen (2010) and Kattmarka (2009) The 2015 collapse of the Skjeggestad Bridge in Norway - which was due to a landslide in sensitive clay - alone costs millions of dollars in repairs. Recently, efforts are being made to increase society's ability to cope with such landslide hazards. Geoscientists are now expected to provide input to the agencies responsible for landslide-risk preparedness. In other words, geoscientists' role is not only to act as technologists to establish new theories, but also to go the extra mile to implement them in practice, so as to find meaningful solutions to geotechnical problems.
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