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01-03-2024 | Original Paper

Frictional rheology-based 3D SPH numerical method for simulating landslide dynamics of granular flow type

Authors: Zheng Han, Changli Li, Hongdi Yan, Wendu Xie, Haohui Ding, Yange Li, Guangqi Chen

Published in: Bulletin of Engineering Geology and the Environment | Issue 3/2024

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Abstract

The article introduces a novel method for simulating landslide dynamics of granular flow type using the Smoothed Particle Hydrodynamics (SPH) method and frictional rheology model. It discusses the limitations of traditional grid-based methods and highlights the advantages of the SPH method in handling large deformation problems. The frictional rheology model is integrated into the SPH framework to simulate the complex dynamics of landslides. The method is validated through a glass bead collapse test and a real-world case study of the Yishui mega-landslides in China. The article also proposes a damage degree index based on impact energy to evaluate the failure state of bridge piers impacted by landslides. The method demonstrates excellent performance in capturing key behavioral characteristics and holds promise for the dynamic analysis and risk assessment of granular-flow type landslides.

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Metadata
Title
Frictional rheology-based 3D SPH numerical method for simulating landslide dynamics of granular flow type
Authors
Zheng Han
Changli Li
Hongdi Yan
Wendu Xie
Haohui Ding
Yange Li
Guangqi Chen
Publication date
01-03-2024
Publisher
Springer Berlin Heidelberg
Published in
Bulletin of Engineering Geology and the Environment / Issue 3/2024
Print ISSN: 1435-9529
Electronic ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-024-03579-z