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Nanoscale dynamics of volcanic processes: Experimental insights and numerical simulations of explosive eruptions

CORDIS · observation · Publication date unknown

explosive eruptions. This cutting-edge approach requires interdisciplinary research combined with technological advances. Through NANOVOLC, I will integrate earth sciences with materials science and artificial intelligence to lift the veil on the process of nanolite formation and its role in magma failure. I will deliver a numerical model of magma ascent and eruption to forecast and quantify the impacts of explosive eruptions. To this end, I will i) perform in situ observations of nanolite formation in magmas, ii) build a unique magma fragmentation apparatus that will push the experimental boundaries explored so far, and iii) use artificial intelligence to support numerical model of non-linear volcanic processes. Beyond volcanology, NANOVOLC will provide fundamental understanding of nanocrystal formation in technical glasses, relevant to glass-ceramic industry.

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recordType
award
status
SIGNED
region
EU
value
1999073.39
unit
EUR

Evidence & attribution

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

License: CORDIS reuse policy

First collected: 2026-09-20T01:21:06.728Z. This is not the publication date.