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discharge. The readings will be compared to the physical model, and also the
fluctuation of the water level.
Figure 13: Drone photo from first discharge test, after completed construction
(Norconsult, 2016).
5. CONCLUSION
Both Långströmmen and Ramsele are high-hazard dams where recent dam
safety revisions have uncovered deficiencies in their spillway structures.
Whether the defects are in spillway capacity or in the structure downstream
where scouring can erode the foundations of dam and spillway, one needs to
fully understand the forces in play prior to designing the spillway structure.
In this, the value provided by physical modelling has been underscored in both
projects by findings during the project life.
In Långströmmen, discoveries on site necessitated a revamp of the design.
In Ramsele, the discoveries were in the model phase and the design could be
adapted parallel to the model tests.
In ideal worlds, the physical models should be kept until the project has been
completed successfully. However, as large physical models are costly to keep
for extended periods of time, the approach described in the Långströmmen
project can be a way forward.
1072
Book of Full Papers
Symposium Hydro Engineering
- Titel
- Book of Full Papers
- Untertitel
- Symposium Hydro Engineering
- Autor
- Gerald Zenz
- Verlag
- Verlag der Technischen Universität Graz
- Ort
- Graz
- Datum
- 2018
- Sprache
- englisch
- Lizenz
- CC BY-NC-ND 4.0
- ISBN
- 978-3-85125-620-8
- Abmessungen
- 20.9 x 29.6 cm
- Seiten
- 2724
- Schlagwörter
- Hydro, Engineering, Climate Changes
- Kategorien
- International
- Naturwissenschaften Physik
- Technik