Εκτίμηση συντελεστή ασφαλείας για την ταπείνωση της στέψης χωμάτινων φραγμάτων
Pytharouli, Stella and Stiros, Stathis (2013) Εκτίμηση συντελεστή ασφαλείας για την ταπείνωση της στέψης χωμάτινων φραγμάτων. In: National ICOLD conference on Dams and Reservoirs, 2013-11-07 - 2013-11-08.
Preview |
Text.
Filename: Pytharouli_Stiros_ICOLD_2013_Estimation_of_a_safety_threshold_for_the_crest_settlements.pdf
Accepted Author Manuscript Download (7MB)| Preview |
Abstract
The crest settlements of embankment dams with a central clay core are usually described as an exponential function of time. They play a major role in the safety and operational capacity of the dam, especially when taking into account that extreme crest settlements that have been observed for some of these dams have resulted in a significant reduction of the storage capacity of the reservoir and maintenance works at large scales and cost (e.g. Ataturk dam, Turkey). We studied the crest settlements of > 40 embankment dams, 10-41 years old, located at different parts of the world. Our analysis shows that the safety threshold for the crest settlements should not be a constant but increase with the age of the dam and that most of suggested thresholds in the literature are too conservative. A safety threshold of 1% (crest settlement to dam height ratio) appears to be realistic for the whole operational life of the dam. The Kremasta dam, whose age and size places it to a most critical situation, has a crest settlement to dam height ratio value well below the above threshold.
ORCID iDs
Pytharouli, Stella ORCID: https://orcid.org/0000-0002-2899-1518 and Stiros, Stathis;-
-
Item type: Conference or Workshop Item(Paper) ID code: 67008 Dates: DateEvent7 November 2013PublishedSubjects: Technology > Engineering (General). Civil engineering (General) Department: Faculty of Engineering > Civil and Environmental Engineering Depositing user: Pure Administrator Date deposited: 19 Feb 2019 11:43 Last modified: 11 Nov 2024 16:57 URI: https://strathprints.strath.ac.uk/id/eprint/67008