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  • 1
    Unbekannt
    Amsterdam, Berlin, Tokyo, Washington, DC : IOS Press
    Schlagwort(e): geotechnical safety ; geotechnical risk
    Beschreibung / Inhaltsverzeichnis: Geotechnical Risk and Safety V contains contributions presented at the 5th International Symposium on Geotechnical Safety and Risk (5th ISGSR, Rotterdam, 13-16 October 2015) which was organized under the auspices of the Geotechnical Safety Network (GEOSNet) and the following technical committees of the of the International Society of Soil Mechanics and Geotechnical Engineering (ISSGME): TC304 Engineering Practice of Risk Assessment & Management TC205 Safety and Serviceability in Geotechnical Design TC212 Deep Foundations TC302 Forensic Geotechnical Engineering Geotechnical Risk and Safety V covers seven themes: Geotechnical Risk Management and Risk Communication Variability in Ground Conditions and Site Investigation Reliability and Risk Analysis of Geotechnical Structures Limit-state design in Geotechnical Engineering Assessment and Management of Natural Hazards Contractual and Legal Issues of Foundation and (Under)Ground Works Case Studies, Monitoring and Observational Method The 5th ISGSR is the continuation of a series of symposiums and workshops on geotechnical risk and reliability, starting with LSD2000 (Melbourne, Australia), IWS2002 (Tokyo and Kamakura, Japan), LSD2003 (Cambridge, USA), Georisk2004 (Bangalore, India), Taipei2006 (Taipei, Taiwan), the 1st ISGSR (Shanghai, China, 2007), the 2nd ISGSR (Gifu, Japan, 2009), the 3rd ISGSR (Munich, Germany, 2011) and the 4th ISGSR (Hong Kong, 2013).
    Seiten: Online-Ressource (XX, 1006 Seiten)
    ISBN: 9781614995807
    Sprache: Englisch
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    Publikationsdatum: 2019-08-30
    Beschreibung: One of the most rapidly emerging measures in infrastructure asset management is Structural Health Monitoring (SHM), which aims at reducing uncertainty in structural performance by using monitoring equipment. As earthen flood defence structures typically have large strength uncertainties, such techniques can be particularly promising. However, insight in the key characteristics for successful SHM for flood defences is lacking, which hampers the practical implementation. In this study, we explore the benefits of pore pressure monitoring, one of the most promising SHM techniques for earthen flood defences. The approach is based on a Bayesian pre-posterior analysis, and results are evaluated based on the Value of Information (VoI) obtained from different monitoring strategies. We specifically investigate the effect on long-term reinforcement decisions. The results show that, next to the relative magnitude of reducible uncertainty, the combination of the probability of having a useful observation and the duration of a SHM effort determine the VoI. As it is likely that increasing loads due to climate change will result in more frequent future reinforcements, the influence of scenarios of different rates of increase in future loads is also investigated. It was found that, in all considered possible scenarios, monitoring yields a positive Value of Information, hence it is an economically efficient measure for flood defence asset management both now and in the future.
    Digitale ISSN: 2412-3811
    Thema: Architektur, Bauingenieurwesen, Vermessung
    Standort Signatur Erwartet Verfügbarkeit
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  • 3
    Publikationsdatum: 2020-12-01
    Print ISSN: 0013-7952
    Digitale ISSN: 1872-6917
    Thema: Geologie und Paläontologie
    Publiziert von Elsevier
    Standort Signatur Erwartet Verfügbarkeit
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