Ballistic projectile hazard of major explosions and paroxysms at Stromboli (Italy) with uncertainty quantification – Part 1: Mapping method and data analysis

This study presents a novel method to map the areas affected by ballistic fallout generated by major explosions and paroxysms at Stromboli as well as quantitative analyses of these areas. The mapping method is based on a simplified description of the affected areas by a circular proximal area and up to three circular sectors with variable radius and width, and uncertainty based on expert judgement. The dataset of maps includes a total of 67 events over ≈ 150 years, based on an extensive review of historical, observational, and monitoring data. Our findings highlight that: (1) 12 %–14 % of major explosions can exceed 1000 m, and 29 % of paroxysms extend over 2000 m of distance; (2) directional analysis of ballistic dispersal shows a predominant direction towards the East half-plane (87 %) for major explosions and towards the North half-plane (64 %) for paroxysms; (3) the average affected area was 6.9 × 10 4 m 2 for major explosions and 3.6 × 10 5 m 2 for paroxysms with a mean sector width of ≈ 90° for both categories. Notably, major explosions and paroxysms show a continuous distribution of maximum ballistic distance and area affected, suggesting the absence of a net separation between these two categories in terms of these products dispersal. Results highlight the limited influence of uncertainty in reconstructing the dispersal areas and stress the importance of ad hoc continuous observation of ballistic dispersal. By quantifying distances, directions, and areas affected by ballistic fallout, we provide the necessary data, together with their uncertainty, to produce probabilistic maps of ballistic hazard presented in the companion study.

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Publication Details

Journal
Natural hazards and earth system sciences
Published
2026-09-17
DOI
https://doi.org/10.5194/nhess-26-4479-2026
Citations
1
Primary Topic
Structural Response to Dynamic Loads
Type
article
Field-Weighted Citation Impact
2.85

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article

Ballistic projectile hazard of major explosions and paroxysms at Stromboli (Italy) with uncertainty quantification – Part 1: Mapping method and data analysis

Augusto Neri, Andrea Bevilacqua, Paola Del Carlo, Massimo Pompilio et al.
1 citations
Natural hazards and earth system sciences
Structural Response to Dynamic Loads
2.85
article

Ballistic projectile hazard of major explosions and paroxysms at Stromboli (Italy) with uncertainty quantification – Part 1: Mapping method and data analysis

Augusto Neri, Andrea Bevilacqua, Paola Del Carlo, Massimo Pompilio, Patrizia Landi
article en
1 citations

Abstract

This study presents a novel method to map the areas affected by ballistic fallout generated by major explosions and paroxysms at Stromboli as well as quantitative analyses of these areas. The mapping method is based on a simplified description of the affected areas by a circular proximal area and up to three circular sectors with variable radius and width, and uncertainty based on expert judgement. The dataset of maps includes a total of 67 events over ≈ 150 years, based on an extensive review of historical, observational, and monitoring data. Our findings highlight that: (1) 12 %–14 % of major explosions can exceed 1000 m, and 29 % of paroxysms extend over 2000 m of distance; (2) directional analysis of ballistic dispersal shows a predominant direction towards the East half-plane (87 %) for major explosions and towards the North half-plane (64 %) for paroxysms; (3) the average affected area was 6.9 × 10 4 m 2 for major explosions and 3.6 × 10 5 m 2 for paroxysms with a mean sector width of ≈ 90° for both categories. Notably, major explosions and paroxysms show a continuous distribution of maximum ballistic distance and area affected, suggesting the absence of a net separation between these two categories in terms of these products dispersal. Results highlight the limited influence of uncertainty in reconstructing the dispersal areas and stress the importance of ad hoc continuous observation of ballistic dispersal. By quantifying distances, directions, and areas affected by ballistic fallout, we provide the necessary data, together with their uncertainty, to produce probabilistic maps of ballistic hazard presented in the companion study.

Natural hazards and earth system sciencesVol. 26(9)
Istituto Nazionale di Geofisica e Vulcanologia (IT), Istituto Nazionale di Fisica Nucleare, Sezione di Pisa (IT)
Dipartimento della Protezione Civile, Presidenza del Consiglio dei Ministri, Istituto Nazionale di Geofisica e Vulcanologia
Openalex Percentile: Top 7%
Structural Response to Dynamic Loads
2.85
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