We propose a procedure for uncertainty quantification in Probabilistic Tsunami Hazard Analysis (PTHA), with a special emphasis on the uncertainty related to statistical modelling of the earthquake source in Seismic PTHA (SPTHA), and on the separate treatment of subduction and crustal earthquakes (treated as background seismicity). An event tree approach and ensemble modelling are used in spite of more classical approaches, such as the hazard integral and the logic tree. This procedure consists of four steps: (1) exploration of aleatory uncertainty through an event tree, with alternative implementations for exploring epistemic uncertainty; (2) numerical computation of tsunami generation and propagation up to a given offshore isobath; (3) (op...
Abstract. Determining the likelihood of a disaster is a key component of any comprehensive hazard as...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...
This article has been accepted for publication in Geophysical Journal Internationa ©: 2016 Published...
Probabilistic tsunami hazard analysis (PTHA) relies on computationally demanding numerical simulatio...
Probabilistic tsunami hazard analysis (PTHA) relies on computationally demanding numerical simulatio...
Applying probabilistic methods to infrequent but devastating natural events is intrinsically challen...
Site-specific seismic probabilistic tsunami hazard analysis (SPTHA) is a computationally demanding t...
Site-specific seismic probabilistic tsunami hazard analysis (SPTHA) is a computationally demanding t...
Applying probabilistic methods to infrequent but devastating natural events is intrinsically challen...
The importance of tsunami hazard assessment has increased in recent years as a result of catastrophi...
Landslides are the second most frequent tsunami source worldwide. However, their complex and diverse...
A probabilistic hazard analysis of tsunami generated by subaqueous volcanic explosion is applied to...
Seismic Probabilistic Tsunami Hazard Analysis (SPTHA) is aimed at estimating the annual rate of exce...
Abstract. Determining the likelihood of a disaster is a key component of any comprehensive hazard as...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...
This article has been accepted for publication in Geophysical Journal Internationa ©: 2016 Published...
Probabilistic tsunami hazard analysis (PTHA) relies on computationally demanding numerical simulatio...
Probabilistic tsunami hazard analysis (PTHA) relies on computationally demanding numerical simulatio...
Applying probabilistic methods to infrequent but devastating natural events is intrinsically challen...
Site-specific seismic probabilistic tsunami hazard analysis (SPTHA) is a computationally demanding t...
Site-specific seismic probabilistic tsunami hazard analysis (SPTHA) is a computationally demanding t...
Applying probabilistic methods to infrequent but devastating natural events is intrinsically challen...
The importance of tsunami hazard assessment has increased in recent years as a result of catastrophi...
Landslides are the second most frequent tsunami source worldwide. However, their complex and diverse...
A probabilistic hazard analysis of tsunami generated by subaqueous volcanic explosion is applied to...
Seismic Probabilistic Tsunami Hazard Analysis (SPTHA) is aimed at estimating the annual rate of exce...
Abstract. Determining the likelihood of a disaster is a key component of any comprehensive hazard as...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...
We propose a methodological approach for a comprehensive and total probabilistic tsunami hazard asse...