Monitoring Surface Deformation over a Failing Rock Slope with the ESA Sentinels: Insights from Moosfluh Instability, Swiss Alps


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Date

2018-04-25

Publication Type

Journal Article

ETH Bibliography

yes

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Data

Abstract

We leverage on optical and radar remote sensing data acquired from the European Space Agency (ESA) Sentinels to monitor the surface deformation evolution on a large and very active instability located in the Swiss Alps, i.e., the Moosfluh rock slope. In the late summer 2016, a sudden acceleration was reported at this location, with surface velocity rates passing from maximum values of 0.2 cm/day to 80 cm/day. A dense pattern of uphill-facing scarps and tension cracks formed within the instability and rock fall activity started to become very pronounced. This evolution of the rock mass may suggest that the most active portion of the slope could fail catastrophically. Here we discuss advantages and limitations of the use of spaceborne methods for hazard analyses and early warningbyusingtheESASentinels,andshowthatincriticalscenariostheyareoftennotsufficientto reliably interpret the evolution of surface deformation. The insights obtained from this case study are relevant for similar scenarios in the Alps and elsewhere.

Publication status

published

Editor

Book title

Volume

10 (5)

Pages / Article No.

672

Publisher

MDPI

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

landslide deformation monitoring; Radar interferometry; digital image correlation; Rock slope failure

Organisational unit

03465 - Löw, Simon (emeritus) / Löw, Simon (emeritus) check_circle

Notes

Funding

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