Three-Dimensional Simulations of Subaerial Landslide-Generated Waves: Comparing OpenFOAM and FLOW-3D HYDRO Models

被引:0
作者
Ramtin Sabeti
Mohammad Heidarzadeh
Alessandro Romano
Gabriel Barajas Ojeda
Javier L. Lara
机构
[1] University of Bath,Department of Architecture and Civil Engineering
[2] Roma Tre University,Engineering Department
[3] IHCantabria-Instituto de Hidráulica Ambiental de la Universidad de Cantabria,undefined
来源
Pure and Applied Geophysics | 2024年 / 181卷
关键词
Tsunami; subaerial landslide; physical modelling; open FOAM; FLOW-3D HYDRO;
D O I
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中图分类号
学科分类号
摘要
The recent destructive landslide tsunamis, such as the 2018 Anak Krakatau event, were fresh reminders for developing validated three-dimensional numerical tools to accurately model landslide tsunamis and to predict their hazards. In this study, we perform Three-dimensional physical modelling of waves generated by subaerial solid-block landslides, and use the data to validate two numerical models: the commercial software FLOW-3D HYDRO and the open-source OpenFOAM package. These models are key representatives of the primary types of modelling tools—commercial and open-source—utilized by scientists and engineers in the field. This research is among a few studies on 3D physical and numerical models for landslide-generated waves, and it is the first time that the aforementioned two models are systematically compared. We show that the two models accurately reproduce the physical experiments and give similar performances in modelling landslide-generated waves. However, they apply different approaches, mechanisms and calibrations to deliver the tasks. It is found that the results of the two models are deviated by approximately 10% from one another. This guide helps engineers and scientists implement, calibrate, and validate these models for landslide-generated waves. The validity of this research is confined to solid-block subaerial landslides and their impact in the near-field zone.
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页码:1075 / 1093
页数:18
相关论文
共 178 条
  • [1] Abadie S(2010)Numerical simulation of waves generated by landslides using a multiple-fluid Navier–Stokes model Coastal Engineering 57 779-794
  • [2] Morichon D(2018)Comparative evaluation of OpenFOAM Chemical Engineering & Technology 41 1473-1483
  • [3] Grilli S(2007) and ANSYS Pure and Applied Geophysics 164 1019-1048
  • [4] Glockner S(2016) Fluent for the modeling of annular reactors Environmental Modelling & Software 80 322-335
  • [5] Ariza C(2017)A higher-order Boussinesq-type model with moving bottom boundary: Applications to submarine landslide tsunami waves Coastal Engineering 128 84-91
  • [6] Casado C(2010)Performance assessment of OpenFOAM and FLOW-3D in the numerical modeling of a low Reynolds number hydraulic jump Landslides 7 117-124
  • [7] Wang R-Q(2011)Wavenumber-frequency analysis of landslide-generated tsunamis at a conical island. Part II: EOF and modal analysis Natural Hazards & Earth System Sciences 11 2511-2520
  • [8] Adams E(2012)Computational fluid dynamics modelling of landslide generated water waves Coastal Engineering 64 57-72
  • [9] Marugán J(2009)Real-time inversion of tsunamis generated by landslides Journal of Geophysical Research: Oceans 81 267-391
  • [10] Ataie-Ashtiani B(2022)Three-dimensional interaction of waves and porous coastal structures: Part I: Numerical model formulation Bulletin of Engineering Geology and the Environment 86 353-297