In this paper we propose a model to forecast eruptions in a real forward perspective. Specifically, the model provides a forecast of the next eruption after the end of the last one, using only the data available up to that time. We focus our attention on volcanoes with open conduit regime and high eruption frequency. We assume a generalization of the classical time predictable model to describe the eruptive behavior of open conduit volcanoes and we use a Bayesian hierarchical model to make probabilistic forecasts. We apply the model to Kilauea volcano eruptive data and Mount Etna volcano flank eruption data. The aims of the proposed model are: (1) to test whether or not the Kilauea and Mount Etna volcanoes follow a time predictable behavior...
The ability to forecast future volcanic eruption durations would greatly benefit emergency response ...
Forecasting volcanic eruptions and their potential impacts are primary goals in Natural Hazards rese...
Forecasting the time, location, nature, and scale of volcanic eruptions is one of the most urgent as...
In this paper we propose a model to forecast eruptions in a real forward perspective. Specifically, ...
The physical processes responsible for volcanic eruptions are characterized by a large number of deg...
Any effective volcanic risk mitigation strategy requires a scientific assessment of the future evolu...
Eruption forecasting refers, in general, to the assessment of the occurrence probability of a given ...
In estimating hazard from a currently quiescent volcano, the most basic quantity of interest is the ...
The statistical analysis of volcanic activity at Mt Etna was conducted with the twofold aim of (1) c...
The modeling of the statistical distribution of eruptive frequency and volume provides basic informa...
At active volcanoes, distinct eruptions are preceded by complex and different precursory patterns; i...
At active volcanoes, distinct eruptions are preceded by complex and different precursory patterns; i...
Bayesian Networks (BNs) are probabilistic graphical models that provide a robust and flexible framewo...
The ability to forecast future volcanic eruption durations would greatly benefit emergency response ...
Forecasting volcanic eruptions and their potential impacts are primary goals in Natural Hazards rese...
Forecasting the time, location, nature, and scale of volcanic eruptions is one of the most urgent as...
In this paper we propose a model to forecast eruptions in a real forward perspective. Specifically, ...
The physical processes responsible for volcanic eruptions are characterized by a large number of deg...
Any effective volcanic risk mitigation strategy requires a scientific assessment of the future evolu...
Eruption forecasting refers, in general, to the assessment of the occurrence probability of a given ...
In estimating hazard from a currently quiescent volcano, the most basic quantity of interest is the ...
The statistical analysis of volcanic activity at Mt Etna was conducted with the twofold aim of (1) c...
The modeling of the statistical distribution of eruptive frequency and volume provides basic informa...
At active volcanoes, distinct eruptions are preceded by complex and different precursory patterns; i...
At active volcanoes, distinct eruptions are preceded by complex and different precursory patterns; i...
Bayesian Networks (BNs) are probabilistic graphical models that provide a robust and flexible framewo...
The ability to forecast future volcanic eruption durations would greatly benefit emergency response ...
Forecasting volcanic eruptions and their potential impacts are primary goals in Natural Hazards rese...
Forecasting the time, location, nature, and scale of volcanic eruptions is one of the most urgent as...