All book chapters
2024

Uncovering a Paleotsunami Triggered by Mass-Movement in an Alpine Lake

U
M. Zafar, D. Dutykh, P. Sabatier, M. Banjan and J. Kim
In Advances in Hydroinformatics — SimHydro 2023 Volume 2, edited by P. Gourbesville, G. Caignaert, Springer Water, pp. 4764, Springer, Singapore, 2024.
Full TextPublisher VersionDOI

Abstract

Mass movements and delta collapses are significant sources of tsunamis in lacustrine environments, impacting human societies enormously. Palaeotsunamis play an essential role in understanding historical events and their consequences along with their return periods. Here, we focus on a palaeo event that occurred during the Younger Dryas to Early Holocene climatic transition, ca., 12,000 years ago in the Lake Aiguebelette (NW Alps, France). Based on high-resolution seismic and bathymetric surveys and sedimentological, geochemical, and magnetic analyses, a seismically induced large mass transport deposit with an initial volume of 767,000 m3 was identified, dated and mapped. To investigate whether this underwater mass transport produced a palaeotsunami in the Lake Aiguebelette, this research combines sedimentary records and numerical models. Numerical simulations of tsunamis are performed using a visco-plastic landslide model for tsunami source generation and two-dimensional depth-averaged nonlinear shallow water equations for tsunami wave propagation and inundation modelling. Our simulations conclude that this sublacustrine landslide produced a tsunami wave with a maximum amplitude of approximately 2 m and run-up heights of up to 3.6 m. The modelled sediment thickness resulting from this mass transport corroborates well with the event deposits mapped in the lake. Based on our results, we suggest that this sublacustrine mass transport generated a significant tsunami wave that has not been reported previously to the best of our knowledge.

Keywords

Sublacustrine landslidesAlpine lakeLacustrine tsunamiPalaeotsunami modellingNonlinear shallow water equations

Bibliographic record

Book: Advances in Hydroinformatics — SimHydro 2023 Volume 2
Editors: P. Gourbesville, G. Caignaert
Series: Springer Water
Pages: 4764
Publisher: Springer, Singapore
ISBN (print): 978-981-97-4075-8
ISBN (online): 978-981-97-4076-5

BibTeX Citation

@incollection{Zafar_2024_uncovering_a_paleotsunami,
  title = {Uncovering a Paleotsunami Triggered by Mass-Movement in an Alpine Lake},
  author = {Zafar, M. and Dutykh, D. and Sabatier, P. and Banjan, M. and Kim, J.},
  booktitle = {Advances in Hydroinformatics — SimHydro 2023 Volume 2},
  editor = {Gourbesville, P. and Caignaert, G.},
  publisher = {Springer},
  year = {2024},
  pages = {47--64},
  doi = {10.1007/978-981-97-4076-5_3},
  url = {https://hal.science/hal-04261487/},
  series = {Springer Water},
  isbn = {978-981-97-4075-8},
  keywords = {Sublacustrine landslides, Alpine lake, Lacustrine tsunami, Palaeotsunami modelling, Nonlinear shallow water equations}
}