Stability analysis of a slope under impact of a rock block using the generalized interpolation material point method (GIMP)

被引:0
作者
André Müller
Euripedes A. Vargas
机构
[1] Pontifical Catholic University,Tecgraf Institute
[2] Pontifical Catholic University,Department of Civil Engineering
来源
Landslides | 2019年 / 16卷
关键词
Impact; Rock block; Soil slope; GIMP;
D O I
暂无
中图分类号
学科分类号
摘要
The present paper presents a study of a particular instability mechanism observed in coastal ranges of southeastern Brazil. It consists of the failure of a saturated soil slope hit by a rock block detached from higher ground. In the rainy season lasting from November to March, slopes are near or at complete saturation. It is also common under these conditions, that blocks of rock masses of gneissic origins, mainly detaching from the rock mass and sliding along relief joints in higher elevations, acquire momentum to impact lower ground slopes consisting mainly by soil masses eventually saturated. The impact generates pore pressures, which can lead to failure of the slope. The present paper proposes to analyze this condition by using the generalized interpolation material point method (GIMP), a method suitable for analyzing the dynamic character of the problem as well as the generated failure mechanism and ensuing run-out of the failed mass. The paper presents details of the problem and of the coupled fluid-mechanical formulation of GIMP used in analysis. It also presents and discusses the obtained results of the analysis carried out. The paper also comments on the suitability of GIMP for analysis of this type of complex slope stability condition.
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页码:751 / 764
页数:13
相关论文
共 84 条
[11]  
Kober EM(1995)Determination of yield stress fluid behaviour from inclinated plane test Rheol Acta 34 534-135
[12]  
Bardenhagen SG(1971)On the occurrence of mud-debris flow Bull Disas Prev Res Inst 21 109-444
[13]  
Brackbill JU(2017)Runout of submarine landslide simulated with material point method J Hydrodyn 29 438-110
[14]  
Sulsky D(1971)Transfert de chaleur dans un fluide de Bingham dont la viscosité depend de la température J Frict Anal 11 93-225
[15]  
Beuth L(2017)Modelling slope failure using a quasi-static MPM with a non-local strain softening approach Procedia Engineering 175 220-343
[16]  
Wieckowski Z(1964)The particle-in-cell computing method for fluid dynamics Method Comput Phys 3 319-1332
[17]  
Vermeer PA(2013)Numerical simulations of progressive failure of triaxial compression tests using generalized interpolation material point method J Appl Mech 6 1321-119
[18]  
Bhandari T(2007)Landslide initiation in saprolite and colluvium in southern Brazil: field and laboratory observations Geomorphology 87 104-202
[19]  
Hamad F(2016)An assessment of the material point method for modelling large scale run-out processes in landslides Landslides 13 1057 1066-663
[20]  
Moormann C(2015)Analysis of excessive deformations in tunnels for safety evaluation Tunn Undergr Space Technol 45 190-1361