Hazard modeling framework examines earthquake preparation and secondary surface failures in alpine terrain, highlighting compound risks from seismic shaking.
COGEAR is an interdisciplinary natural hazard project to investigate short and long-term earthquake preparation processes as well as complex surface effects induced by seismic strong ground motion. It addresses tectonic processes and related variability of seismicity in space and time, earthquake forecasting and observation of possible short-term precursors, and modelling and observation of weak and strong ground motion as a result of complex source and path effects. In soils and rock, we study non-linear wave propagation phenomena and liquefaction, the long-term impacts of repeated earthquakes on slope stability through rock mass strength degradation, and the triggering of landslides; the potential of earthquake-induced snow avalanches is also be estimated. Our focus is on the physics of non-linear processes in relation to topography, geological disposition, water saturation and slope stability. The consequences of earthquakes will be evaluated through scenarios of direct seismic hazard and assessment of susceptibility to induced (secondary) effects. The Valais region in Switzerland, and specifically the area of Visp, as well as the Visper and Matter valleys, have been selected. In the past, the Valais has experienced every 100 years a magnitude 6 or larger event, with the last magnitude 6.1 earthquake in 1946. The region of Visp is hit by damaging earthquakes every 40 years (Intensity VI-VIII), with the last nearby event in 1960 reaching a macroseismic intensity of VIII. During all
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