J 2021

Measurements and modeling of the post-failure micro-deformations and tilts of the Preonzo unstable slope, Alpe di Roscioro, Switzerland

OPRŠAL, Ivo, Johannes THUN, Jan BURJANEK and Donat FAEH

Basic information

Original name

Measurements and modeling of the post-failure micro-deformations and tilts of the Preonzo unstable slope, Alpe di Roscioro, Switzerland

Name in Czech

Měření a modelování následných mikrodeformací a náklonů na nestabilním svahu Preonzo, Alpe di Roscioro, Švýcarsko

Authors

OPRŠAL, Ivo (203 Czech Republic, guarantor, belonging to the institution), Johannes THUN (203 Czech Republic), Jan BURJANEK (203 Czech Republic) and Donat FAEH (756 Switzerland)

Edition

Engineering Geology, Amsterdam, Elsevier, 2021, 0013-7952

Other information

Language

English

Type of outcome

Article in a journal

Field of Study

10505 Geology

Country of publisher

Netherlands

Confidentiality degree

is not subject to a state or trade secret

References:

Impact factor

Impact factor: 6.902

Organization unit

Institute of Technology and Business in České Budějovice

UT WoS

000615526300010

Keywords (in Czech)

Nestabilita skalního svahu; modelování konečnými diferencemi; směrové deformace; mikrodeformace; mikro náklony; data mining

Keywords in English

Rock slope instability; Finite difference modeling; Directional deformations; Micro deformations; Micro tilt; Data mining

Tags

Links

LM2018140, research and development project.
Changed: 7/4/2021 11:53, Ing. Barbora Langšádlová

Abstract

V originále

The Alpe di Roscioro, is a site of an unstable rock slope located above the village of Preonzo in southern Switzerland. There have been numerous rock-slope failures with a major event that happened in May 2012. After that event, several seismic stations were set up at the site of the remaining highly fractured and unstable rock mass. The analysis of continuous seismic recordings has shown a high number of permanent micro-deformations and tilts, recorded by a seismometer located on top of the unstable part of the slope. In terms of the ground motion, the directions of these disturbances are parallel to the mean strike of the mapped fracture network, implying a connection to the ongoing deformations of the rock mass. The static deformation field of the fractured rock mass is modeled by finite-difference method (FD). The FD method enables us to apply a reciprocal approach by tilting the affected body of block 1, closest to the stable massif, by measured values and observing the deformations below the seismometer and in the neighboring blocks. The numerical model explains the following features observed in situ: feature 1. The combination of the horizontal displacement and tilt observed approximately at the same measurement point; feature 2. The block 1 center of rotation is shifted towards SSE by similar to 10 m off its center; feature 3. The sensors placed on the stable massif did not record any micro-deformation and tilt signals above the background noise. In the light of the numerical modeling, the weak coupling between the micro-tilt active block 1 and neighboring media explains the absence of detected events in the reference stations placed on the stable massif. The simplified "shear and bending" force system FD model, indicates that the aftermath of the May 2012 main failure consisted of numerous episodic elementary relaxations of the SSE part of block 1 after the collapse of its NNW compartment, which was previously connected to it.

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Measurements_and_modeling_of_the_post-failure_micro-deformations_and_tilts_of_the_Preonzo_unstable_slope_Alpe_di_Roscioro_Switzerland_-_Oprsal.pdf
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