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Influence of material characteristics on the failure mode and process of landslide dam

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摘要 Landslide dams,as frequent natural hazards,pose significant risks to human lives,property,and ecological environments.The grading characteristics and density of dam materials play a crucial role in determining the stability of landslide dams and the potential for dam breaches.To explore the failure mechanisms and evolutionary processes of landslide dams with varying soil properties,this study conducted a series of flume experiments,considering different grain compositions and material densities.The results demonstrated that grading characteristics significantly influence landslide dam stability,affecting failure patterns,breach processes,and final breach morphologies.Fine-graded materials exhibited a sequence of surface erosion,head-cut erosion,and subsequent surface erosion during the breach process,while well-graded materials typically experienced head-cut erosion followed by surface erosion.In coarse-graded dams,the high permeability of coarse particles allowed the dam to remain stable,as inflows matched outflows.The dam breach model experiments also showed that increasing material density effectively delayed the breach and reduced peak breach flow discharge.Furthermore,higher fine particle content led to a reduction in the residual dam height and the base slope of the final breach profile,although the relationship between peak breach discharge and the content of fine and coarse particles was nonlinear.To better understand breach morphology evolution under different soil characteristics and hydraulic conditions,three key points were identified—erosion point,control point,and scouring point.This study,by examining the evolution of failure patterns,breach processes,and breach flow discharges under various grading and density conditions,offers valuable insights into the mechanisms behind landslide dam failures.
出处 《Journal of Mountain Science》 2025年第1期89-109,共21页 山地科学学报(英文)
基金 financially supported by the National Natural Science Foundation of China(Grant Nos.U22A20602,U2040221,and 42207228) the Sichuan Science and Technology Program(2022NSFSC1060) the Fundamental Research Funds for Central Public Research Institutes(Grant No.Y324006)。
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  • 1廖小永,卢金友.水工实体模型变态问题研究现状与展望[J].人民长江,2008,39(24):57-60. 被引量:4
  • 2Chaiyuth CHINNARASRI,Tawatchai TINGSANCHALI,Sutat WEESAKUL,Somchai WONGWISES.FLOW PATTERNS AND DAMAGE OF DIKE OVERTOPPING[J].International Journal of Sediment Research,2003,18(4):301-309. 被引量:15
  • 3ZHANG JianYun,LI Yun,XUAN GuoXiang,WANG XiaoGang,LI Jun.Overtopping breaching of cohesive homogeneous earth dam with different cohesive strength[J].Science China(Technological Sciences),2009,52(10):3024-3029. 被引量:35
  • 4MORRIS M W, HASSAN M A A, VASKINN K A. Breaching formation: field test and laboratory experiments[ J]. Journal of Hydraulic Research, 2007, 45(extra) :9-17.
  • 5HOEG K, LOEVOI,I, A, VASKINN K A. Stability and breaching of embankment dams: Field tests on 6 m high dams [J]. International Journal on Hydropower & Dares,2004, 11(1) : 88-92.
  • 6COLEMAN S E, ANDREWS D P, WEBBY M G. Overtopping breaching ofnoncohesive homogeneous embankments[J].Journal of Hydraulic Engineering, 2002, 128 ( 9 ) :829-838.
  • 7ROZOV A L. Modeling of washout of dams[ J]. Journal of Hydraulic Research, 2003, 41 (6) :565-577.
  • 8Dupon E, Dewals B J, Archambeau P, et al. Experimental and numerical study of the breaching of an embankment dam[ C ]//Proe 32nd IAHR Congress. Venice, Italy, 2007 : 1-10.
  • 9SCHMOCKER L, HAGER W H. Dike breaching due to overtopping[ C ]// 33nd IAHR Congress. Water Engineering for a Sustainable Environment. Vancouver: ASCE, Canada, 2009 : 3896-3903.
  • 10黄金池.堰塞坝漫顶溃口流量变化过程的数值模拟[J].水利学报,2008,39(10):1235-1240. 被引量:33

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