Meeting:Abstract 2011 CSDMS meeting-066: Difference between revisions

From CSDMS
No edit summary
m (Text replacement - "USA" to "United States")
 
(6 intermediate revisions by 2 users not shown)
Line 1: Line 1:
{{#ifeq:{{#expr:{{#time: U}}>{{#expr:
<!--{{CSDMS meeting program template
{{#expr:{{#switch: {{#sub:{{REVISIONTIMESTAMP}}|4|-8}}
|CSDMS meeting first hydrological choice=I am not interested
| 7 = 1309478400
|CSDMS meeting second hydrological choice=I am not interested
| 8 = 1312156800
|CSDMS meeting first terrestrial choice=CHILD
| 9 = 1314835200
|CSDMS meeting second terrestrial choice=Delft3D
| 10 = 1317427200
|CSDMS meeting first coastal choice=I am not interested
}} + {{#expr:{{#sub:{{REVISIONTIMESTAMP}}|6|-6}}*24*3600}} + {{#expr:{{#sub:{{REVISIONTIMESTAMP}}|8|-4}}*3600}} +  {{#expr:{{#sub:{{REVISIONTIMESTAMP}}|10|-2}} *60}} + {{#sub:{{REVISIONTIMESTAMP}}|12}} -64800}}+30 }} }}|1|{{CSDMS meeting 2011 paid}}|{{CSDMS meeting 2011 not paid}} }}<br>
|CSDMS meeting second coastal choice=I am not interested
|CSDMS meeting first marine choice=I am not interested
|CSDMS meeting second marine choice=I am not interested
|CSDMS meeting first carbonate choice=I am not interested
|CSDMS meeting second carbonate choice=I am not interested
|CSDMS meeting first tool choice=I am not interested
|CSDMS meeting second tool choice=I am not interested
}}-->
{{CSDMS meeting personal information template
{{CSDMS meeting personal information template
|CSDMS meeting first name=Eunseo
|CSDMS meeting first name=Eunseo
Line 12: Line 19:
|CSDMS meeting city=Palisades
|CSDMS meeting city=Palisades
|CSDMS meeting state=New York
|CSDMS meeting state=New York
|CSDMS meeting country=USA
|CSDMS meeting country=United States
|CSDMS meeting email address=echoi@ldeo.columbia.edu
|CSDMS meeting email address=echoi@ldeo.columbia.edu
|CSDMS meeting phone=845-365-8813
|CSDMS meeting phone=845-365-8813
Line 26: Line 33:
}}
}}
{{CSDMS meeting abstract figures
{{CSDMS meeting abstract figures
|CSDMS meeting abstract figure=Landslide z-L paper, Fig2- plasticStrain allScales3a.pdf
|CSDMS meeting abstract figure=Abstract 066 CSDMS meeting 2011 Landslide z-L paper, Fig2- plasticStrain allScales3a.png
|CSDMS meeting abstract figure caption=Simulated landslide geometries and model plastic strain (colors): (a) L = 50 m, (b) L = 100 m, (c) L = 200 m, (d) L = 400 m.
|CSDMS meeting abstract figure caption=Simulated landslide geometries and model plastic strain (colors): (a) L = 50 m, (b) L = 100 m, (c) L = 200 m, (d) L = 400 m.
}}
}}
{{blank line template}}
{{blank line template}}
{{CSDMS meeting program template
{{CSDMS meeting program template1
|CSDMS meeting first hydrological choice=I am not interested
|CSDMS meeting first day choice=Geo-Modeling
|CSDMS meeting second hydrological choice=I am not interested
|CSDMS meeting second day choice=CHILD
|CSDMS meeting first terrestrial choice=CHILD
|CSDMS meeting third day choice=I can not attend a clinic
|CSDMS meeting second terrestrial choice=Delft3D
|CSDMS meeting first coastal choice=I am not interested
|CSDMS meeting second coastal choice=I am not interested
|CSDMS meeting first marine choice=I am not interested
|CSDMS meeting second marine choice=I am not interested
|CSDMS meeting first carbonate choice=I am not interested
|CSDMS meeting second carbonate choice=I am not interested
|CSDMS meeting first tool choice=I am not interested
|CSDMS meeting second tool choice=I am not interested
}}
}}
{{CSDMS meeting logistics template
{{CSDMS meeting logistics template

Latest revision as of 15:10, 10 June 2017


Browse  abstracts

CSDMS all hands meeting 2011

Landslide rupture and length-depth scaling

Eunseo Choi, Lamont-Doherty Earth Observatory Palisades New York, . echoi@ldeo.columbia.edu



[[Image:|300px|right|link=File:]]Landslides are often assumed to exhibit self-similarity in their failure geometry, and thus a linear scaling between slip depth and rupture length. This assumption has important implications for the prediction of large landslide volumes and for the estimation of erosion budgets by mass-wasting. Nevertheless, some field data indicate a break from self-similarity and imply that, in some circumstances, landslide depth may scale non-linearly with length. Here we test the simple scaling hypothesis by numerical experiment. Modeling is performed with SNAC (StGermaiN Analysis of Continua), a 3D community code originally designed to model viscoelastoplastic deformation on a crustal scale and newly adapted to treating hillslope failure. SNAC employs a parallelized, Lagrangian, explicit finite-difference scheme and dynamic relaxation to solve static, quasi-static and steady-state problems. Landslide rupture is treated as emergent shear localization under strain-weakening Mohr-Coulomb plasticity. We model only the initial slip and early motion of a landslide; granular flow during the runout phase is not considered. A set of 2+1D simulations of failures spanning lengths of 50–400m suffice to vindicate cross-sectional self-similarity—absent any dominant depth scale or trend in the variation of cohesion—and a depth-length ratio of 11–15% is recorded. An interesting by-product of the choice of experimental geometry is some unanticipated complexity in the evolution of the slip plane. Failure initiates at the toe, propagates upslope, and asymptotically parallels the planar upper boundary. However, a connected failure surface is only achieved once a secondary rupture has propagated downwards into this slip plane from the upper breakaway zone. The broader outcome of our numerical experiments is a demonstration of how 3D continuum modeling of soil and rock-slope failure, and the study of their rich behavior, is now feasible using non-commercial code on supercomputing platforms.


Abstract 066 CSDMS meeting 2011 Landslide z-L paper, Fig2- plasticStrain allScales3a.png
Simulated landslide geometries and model plastic strain (colors): (a) L = 50 m, (b) L = 100 m, (c) L = 200 m, (d) L = 400 m.