The laboratory evidence of phase transformation from landslide to debris flow

被引:0
作者
Ogbonnaya Igwe
Fawu Wang
Kyoji Sassa
Hiroshi Fukuoka
机构
[1] University of Nigeria,Department of Geology
[2] Shimane University,Department of Geo
[3] Kyoto University,science
来源
Geosciences Journal | 2014年 / 18卷
关键词
debris flow; liquefaction; threshold density; pore pressure; slope stability;
D O I
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中图分类号
学科分类号
摘要
The dominant factors initiating the transformation of landslides into catastrophic debris flow are examined. The research found that a threshold pore pressure determined from theoretical and experimental analysis was enough to initiate liquefaction type of failure in sandy materials. Loading tests to failure on sourcearea sandy soils from a catastrophic landslide location show that under definite conditions of loading, a threshold state, characterized by the equality and constancy of pore pressure and shear resistance develops in the sands at a threshold density. Sands at this density clearly define the boundary between contractive and dilative specimens under same effective normal stress. Confirmatory experiments were then conducted using silica sand. Analyses showed that samples in which the threshold pore pressure was exceeded readily liquefied while those in which the pore pressure was below the limit dilated. The concept of threshold pore pressure fills the gap created by classical theories of soils liquefaction that have identified densities at which phase transformation and steady state lines can be defined. The new concept shows there is a density at which both lines merge and it is proposed that sands transiting from dense to loose and vice versa will first pass through the threshold state. While the stability of a slope founded on sandy soils may be breached when the pore pressure exceeds a certain limit, it is possible to make estimates of the limit. Where such estimates are accompanied with adequate field measurements, the effectiveness of landslide prevention projects may be enhanced.
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页码:31 / 44
页数:13
相关论文
共 124 条
[1]  
Alarcon-Guzman A(1988)Undrained monotonic and cyclic strength of sands Journal of Geotechnical Engineering Division 114 1089-1109
[2]  
Leonards GA(1993)Effects of confining pressure on dynamic soil properties using improved transfer function estimators Soil Dynamics and Earthquake Engineering 12 145-147
[3]  
Chameau JL(1985)A state parameter for sands Geotechnique 35 99-112
[4]  
Amini F(1991)The critical state of sands Geotechnique 41 365-381
[5]  
Been K(1960)The principle of effective stress Norwegian Geotechnical Institute, Oslo, Publication 32 1-5
[6]  
Jefferies MG(1986)The strength and dilatancy of sands Geotechnique 36 65-78
[7]  
Been K(1936)Characteristics of cohesionless soils affecting the stability of slopes and earth fills Journal of Boston Society of Civil Engineers 23 13-32
[8]  
Jefferies MG(1975)Liquefaction and cyclic mobility of saturated sands Journal of Geotechnical Engineering (ASCE) 101 551-569
[9]  
Hachey J(1977)Factors affecting liquefaction and cyclic mobility Journal of Geotechnical Engineering (ASCE) 103 501-516
[10]  
Bishop AW(2003)Unstable behaviour of sand and its implication for slope instability Canadian Geotechnical Journal 40 873-885