The amplifying effect of wood on debris-flow induced impact forces on bridge superstructures
Version
Published
Identifiers
10.1016/j.enggeo.2025.108312
Date Issued
2025-10
Author(s)
Type
Article
Language
English
Abstract
This study examines the impact of wood-laden debris flows on bridge superstructures, focusing on the influence of different bridge profiles (full slab and trough) and log lengths. Using a small-scale physical model, experiments were conducted to measure the horizontal and vertical forces exerted by debris flows with and without wood. The results indicate that the presence of wood significantly increases both horizontal and vertical impact forces on bridge superstructures. The shape of the bridge profile did not significantly affect horizontal and positive vertical impact forces but did influence the magnitude of negative vertical forces. For the full slab profile, however, a measurable influence of the log length on the measured forces cannot be ruled out. The findings underscore the critical role of wood in amplifying impact forces on bridge superstructures, suggesting that bridge designs in debris flow-prone areas should account for the presence of wood to enhance structural resilience and stability. Further experimental studies are recommended to fully understand the interactions between wood-laden debris flows and bridge impact dynamics, and to develop more effective mitigation strategies.
Publisher DOI
Journal or Serie
Engineering Geology
ISSN
0013-7952
Organization
Volume
357
Publisher
Elsevier
Submitter
Proske, Dirk
Citation apa
Proske, D., Friedl, C., Egkher, L., Wernhart, S., & Scheidl, C. (2025). The amplifying effect of wood on debris-flow induced impact forces on bridge superstructures. In Engineering Geology (Vol. 357). Elsevier. https://doi.org/10.24451/dspace/12296
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Version
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