stress-driven

Geohazard information for the masses

Category: Research (page 4 of 4)

Ongoing instability of the Randa rock slope (Switzerland)

A large Alpine rockfall caught on video

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Glacier retreat and slope instability, an example from Mount Kazbek, Georgia

A large landslide close to the Georgia – Russia border this week killed up to eight people, and disrupted construction of a new hydropower diversion tunnel.

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The Badakshan landslide: A forseeable tragedy?

A recent rainfall-triggered landslide in Ab Barek (sometimes referred to as Abe Bareek) in the Badakhshan Province of Afghanistan is suspected of taking the lives of up to 2100 villagers. As with so many remote events, details are scarce, although a number of images and videos have appeared on social media websites over the last […]

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Predicted distribution of various types of fracture beneath an Alpine valley. Here we start with a ‘V’ shaped topography, introduce ice, and manually cut out the center of the valley. Fractures forming in tension and shear are coloured yellow and orange, respectively, while active ‘micro-cracking’ is purple, and regions in which we predict explosive fracturing are marked in red under the ice. Note how the area of explosive fracturing increases as we remove ice, and the difference in fracture distribution between model Stages 14 and 32, for which the only difference is the relief of stresses during the intermediate period of deglaciation (Leith et al. 2014).

Leith, K., Moore, J.R., Amann, F., Loew, S., 2014. Sub-glacial extensional fracture development and implications for Alpine valley evolution. J. Geophys. Res. 119, 62-81.

A revised compilation of in situ stress measurements indicates maximum differential stress magnitudes are limited by micro crack initiation.

Leith, K., Moore, J.R., Amann, F., Loew, S., 2014. In situ stress control on micro-crack generation and macroscopic extensional fracture in exhuming bedrock. J. Geophys. Res. 119, 594–615.

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