Influence of analog barrier type and impact velocity on the energy dissipation of simulant saprolitic rock particles colliding rigid and deformable barrier systems
Author:
Publisher
Elsevier BV
Subject
Geotechnical Engineering and Engineering Geology,Transportation,Civil and Structural Engineering
Reference58 articles.
1. The physics of debris flows;Iverson;Rev Geophys,1997
2. Energy dissipation from two-glass-bead chains under impact;Jiang;Int J Impact Eng,2018
3. Rockfall hazard mitigation on infrastructures in volcanic slopes using computer-modelled ditches;Yepes;Transp Geotech,2020
4. Effects of particle size of mono-disperse granular flows impacting a rigid barrier;Cui;Nat Hazards,2018
5. A unified CFD-DEM approach for modeling of debris flow impacts on flexible barriers;Felix;Int J Numer Anal Meth Geomech,2018
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1. On the collision problem of simulant debris flow particles against concrete barriers of various strengths;Bulletin of Engineering Geology and the Environment;2024-07-27
2. Protective effects of baffles with different positions, row spacings, heights on debris flow impact;Journal of Mountain Science;2024-07
3. Toward a fundamental understanding of the impact mechanisms of analog proppant-clastic rock systems through numerical analysis;Geoenergy Science and Engineering;2023-08
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