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Lascar, Chile
Figure in a journal article
Probabilistic hazard map for volcanic ballistics at Lascar volcano at 1:75,000 scale.
Figure 7 in: Bertin, D. (2017). 3‐D ballistic transport of ellipsoidal volcanic projectiles considering horizontal wind field and variable shape‐dependent drag coefficients. Journal of Geophysical Research: Solid Earth, 122(2), p. 1126-1151. https://doi.org/10.1002/2016JB013320

San Salvador, El Salvador
Figure in a journal article
Probabilistic hazard map of PDC showing the inundation probability conditioned on the occurrence of a small-scale PDC at the SSVC
Figure 8 in: Aravena, A., Bevilacqua, A., Neri, A., Gabellini, P., Ferrés, D., Escobar, D., Aiuppa, A., & Cioni, R. (2023). Scenario-based probabilistic hazard assessment for explosive events at the San Salvador Volcanic complex, El Salvador. Journal of Volcanology and Geothermal Research, 438, 107809.

Tungurahua, Ecuador
Figure in a journal article
Probabilistic hazard maps for the eruptive scenario ES1 (violent Strombolian to Vulcanian eruption)
Figure 4 in: Aravena, A., Tadini, A., Bevilacqua, A. et al. Probabilistic, scenario-based hazard assessment for pyroclastic density currents at Tungurahua volcano, Ecuador. (2024). Bulletin of Volcanology 86, 84. https://doi.org/10.1007/s00445-024-01768-y

Tungurahua, Ecuador
Figure in a journal article
Probabilistic hazard maps for the eruptive scenario ES2 (sub-Plinian eruption)
Figure 7 in: Aravena, A., Tadini, A., Bevilacqua, A. et al. Probabilistic, scenario-based hazard assessment for pyroclastic density currents at Tungurahua volcano, Ecuador. (2024). Bulletin of Volcanology 86, 84. https://doi.org/10.1007/s00445-024-01768-y

San Salvador, El Salvador
Figure in a journal article
Probabilistic hazard maps of tephra fallout showing a set of isolines of exceedance probability associated with different values of mass per unit area on the ground (1, 10, 50 and 100 kg/m2)
Figure 5 in: Aravena, A., Bevilacqua, A., Neri, A., Gabellini, P., Ferrés, D., Escobar, D., Aiuppa, A., & Cioni, R. (2023). Scenario-based probabilistic hazard assessment for explosive events at the San Salvador Volcanic complex, El Salvador. Journal of Volcanology and Geothermal Research, 438, 107809.

San Salvador, El Salvador
Figure in a journal article
Probabilistic hazard maps of tephra fallout showing a set of isolines of mass per unit area associated with different values of conditional probability (10%, 50%, and 90%) for the occurrence of a Plinian eruption at El Boquerón volcano (plume height between 20 and 30 km)
Figure 3 in: Aravena, A., Bevilacqua, A., Neri, A., Gabellini, P., Ferrés, D., Escobar, D., Aiuppa, A., & Cioni, R. (2023). Scenario-based probabilistic hazard assessment for explosive events at the San Salvador Volcanic complex, El Salvador. Journal of Volcanology and Geothermal Research, 438, 107809.

San Salvador, El Salvador
Figure in a journal article
Probabilistic hazard maps of tephra fallout showing a set of isolines of mass per unit area associated with different values of conditional probability (10%, 50%, and 90%) for the occurrence of a sub-Plinian eruption at El Boquerón volcano (plume height between 12 and 20 km).
Figure 4 in: Aravena, A., Bevilacqua, A., Neri, A., Gabellini, P., Ferrés, D., Escobar, D., Aiuppa, A., & Cioni, R. (2023). Scenario-based probabilistic hazard assessment for explosive events at the San Salvador Volcanic complex, El Salvador. Journal of Volcanology and Geothermal Research, 438, 107809.

Puyehue-Cordon Caulle, Chile
Figure in a journal article
Probabilistic isomass maps showing the typical tephra accumulations (kg m−2) for a conditional probability of occurrence of the hazard
Figure 8 in: Biass, S., Bonadonna, C., Connor, L., & Connor, C. (2016). TephraProb: a Matlab package for probabilistic hazard assessments of tephra fallout. Journal of Applied Volcanology, 5(1), 1-16. https://doi.org/10.1186/s13617-016-0050-5

Vesuvius, Italy
Figure in a journal article
Probabilistic multi-hazard assessment of rain-triggered lahars at Somma-Vesuvius (Italy).
Figure 10 in: Tierz, P., Woodhouse, M.J., Phillips, J.C., Sandri, L., Selva, J., Marzocchi, W., & Odbert, H.M. (2017). A framework for probabilistic multi-hazard assessment of rain-triggered lahars using Bayesian belief networks. Frontiers in Earth Science, 5 (73). https://doi.org/10.3389/feart.2017.00073

Asosan, Japan
Figure in a journal article
Probabilistic PDC invasion maps for four sets of simulations (N = 1000 each run) with different values of collapsing volume and vent positions sampled uniformly within Aso caldera
Figure 2 in: Bevilacqua, A., Aravena, A., Aspinall, W., Costa, A., Mahony, S., Neri, A., Sparks, S. & Hill, B. (2022). Assessing minimum pyroclastic density current mass to impact critical infrastructures: example from Aso caldera (Japan). Natural Hazards and Earth System Sciences, 22(10), 3329-3348.

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