AIIC AI Intelligence Centre

SOURCE-LINKED INTELLIGENCE

What is controlling plate motions over the minutes to decades timescale?

CORDIS · observation · Publication date unknown

ke imminence? We will reveal the extent of non-linear tectonic motions by developing GNSS processing algorithms and applying these to data from the thousands of tectonic GNSS stations worldwide. With machine learning, numerical modelling, and laboratory experimentation, we will determine to what extent faults are modulated by variable regional tectonics and loading. We will develop kinematic and laboratory modelling strategies to better understand transient tectonic boundary conditions such as transient slab-pull at subduction zones. While analysis will span continental and global scales, we will also investigate the kinematics of faults and fault networks with dense GNSS observations at a higher resolution, using GNSS and seismic data from north-central Chile as well as from laboratory-scale analog modelling to track fault failure in unprecedented detail. In Greece, a world-class example of a seismically hazardous zone of fault-network complexity, we will set up a world’s first low-cost tectonic GNSS network to understand how microplate motions interact with the larger wavelength t

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recordType
award
status
SIGNED
region
EU
value
1851160
unit
EUR

Evidence & attribution

European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.

License: CORDIS reuse policy

First collected: 2026-09-20T00:21:03.701Z. This is not the publication date.