ER
| Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
|---|---|---|---|---|---|---|---|
| X-Ray micro-tomography unveils the internal features of volcanic ash aggregates | Communications earth & environment | 2025 | 23 | 14 | |||
| Particle Aggregation and Settling‐Driven Gravitational Instabilities: A Combined Impact on Volcanic Ash Sedimentation | Journal of geophysical research. Solid earth | 2025 | 24 | 11 | |||
| In situ volcanic ash sampling and aerosol–gas analysis based on UAS technologies (AeroVolc) | Atmospheric measurement techniques | 2025 | 26 | 15 | |||
| The post-2016 long-lasting Vulcanian activity of Sabancaya volcano (Peru) and associated aeolian remobilisation of volcanic ash | Journal of volcanology and geothermal research | 2023 | 111 | 45 | |||
| Tephra sedimentation and grainsize associated with pulsatory activity: the 2021 Tajogaite eruption of Cumbre Vieja (La Palma, Canary Islands, Spain) | Frontiers in earth science | 2023 | 107 | 46 | |||
| Insights into the sticking probability of volcanic ash particles from laboratory experiments | Scientific reports | 2023 | 75 | 35 | |||
| Tephra characterization and multi-disciplinary determination of Eruptive Source Parameters of a weak paroxysm at Mount Etna (Italy) | Journal of volcanology and geothermal research | 2022 | 526 | 93 | |||
| PlumeTraP: A New MATLAB-Based Algorithm to Detect and Parametrize Volcanic Plumes from Visible-Wavelength Images | Remote sensing | 2022 | 210 | 96 | |||
| Aerodynamic characteristics and genesis of aggregates at Sakurajima Volcano, Japan | Scientific reports | 2022 | 286 | 99 | |||
| First field evidence of the electrical multipolar nature of volcanic aggregates | Science advances | 2022 | 206 | 263 | |||
| Modelling the size distribution of aggregated volcanic ash and implications for operational atmospheric dispersion modelling | Atmospheric chemistry and physics | 2022 | 254 | 82 | |||
| New insights into real-time detection of tephra grainsize, settling velocity and sedimentation rate | Scientific reports | 2022 | 196 | 134 | |||
| Assessing hazard and potential impact associated with volcanic ballistic projectiles: The example of La Soufrière de Guadeloupe volcano (Lesser Antilles) | Journal of volcanology and geothermal research | 2021 | 436 | 119 | |||
| A Model for Buoyant Tephra Plumes Coupled to Lava Fountains With an Application to the 29th of August 2011 Paroxysmal Eruption at Mount Etna, Italy | Journal of geophysical research | 2021 | 279 | 327 | |||
| The fate of volcanic ash: premature or delayed sedimentation? | Nature Communications | 2021 | 385 | 154 | |||
| SCARLET-1.0: SpheriCal Approximation for viRtuaL aggrEgaTes | Geoscientific Model Development | 2021 | 451 | 204 | |||
| Modelling the Effect of Electrification on Volcanic Ash Aggregation | Frontiers in Earth Sciences | 2021 | 342 | 166 | |||
| Physical and Aerodynamic Characterization of Particle Clusters at Sakurajima Volcano (Japan) | Frontiers in Earth Sciences | 2020 | 310 | 260 | |||
| Mass flux decay timescales of volcanic particles due to aeolian processes in the Argentinian Patagonia steppe | Scientific Reports | 2020 | 357 | 162 | |||
| Exposure-based risk assessment and emergency management associated with the fallout of large clasts at Mount Etna | Natural Hazards and Earth System Sciences | 2019 | 613 | 235 | |||
| A new strategy for the estimation of plume height from clast dispersal in various atmospheric and eruptive conditions | Earth and Planetary Science Letters | 2019 | 1,164 | 319 | |||
| Near-Real-Time Tephra Fallout Assessment at Mt. Etna, Italy | Remote Sensing | 2019 | 381 | 214 | |||
| A new perspective on volcanic particle sedimentation and aggregation | 2018 | 807 | 262 | ||||
| Timing and nature of volcanic particle clusters based on field and numerical investigations | Journal of volcanology and geothermal research | 2016 | 532 | 3 | |||
| MeMoVolc report on classification and dynamics of volcanic explosive eruptions | Bulletin of volcanology | 2016 | 590 | 2 |
