A high-resolution forecast methodology for the ash hazard at Sakurajima volcano, Japan, is presented. The methodology employs a combined modeling approach and utilizes eruption source parameters estimated by geophysical observations from Sakurajima, allowing for a proactive approach in forecasting. The Weather Research and Forecasting (WRF) model is used to downscale Japan Meteorological Agency (JMA) forecast data over the area of interest. The high-resolution meteorological data are then used in FALL3D model to provide a forecast for the ash dispersal and deposition. The methodology is applied for an eruption that occurred on June 16, 2018. Disdrometer observations of ashfall are used along with ash dispersal modeling to inform the choice ...
Observing volcanic ash dispersion becomes critical following the abundance incidents of aircraft dam...
Abstract When an explosive eruption, such as a Plinian eruption, occurs, in order to estimate ash fa...
Quantifying the potential ash fall hazards from re-awakening volcanoes is a topic of great interest....
In this study, a real-time volcanic ash dispersion model called PUFF is applied to the Sakura-jima v...
As a result of the serious consequences of the 2010 Eyjafjallajökull eruption (Iceland) on civil avi...
Ash aggregation processes during explosive eruptions can effectively influence volcanic plume disper...
As a result of the serious consequences of the 2010 Eyjafjallajökull eruption (Iceland) on civil avi...
Volcanic ash is a major atmospheric hazard that has a significant impact on local populations and in...
PUFF is a numerical volcanic ash tracking model developed to simulate the behaviour of ash clouds in...
Volcanic ash poses an ongoing risk to the safety of airspace worldwide. The accuracy to which we can...
High-quality volcanic ash forecasts are crucial to minimize the economic impact of volcanic hazards...
Hazard analysis at caldera volcanoes is challenging due to the wide range of eruptive and environmen...
Volcanic ash can interact with the earth system on many temporal and spatial scales and is a signifi...
During the sub-plinian eruptions of Mt. Shinmoedake (Japan) on 26–27 January 2011 a significant amou...
Abstract. We model the transport and subsequent deposition of ash from Chaitén volcano, Chile, duri...
Observing volcanic ash dispersion becomes critical following the abundance incidents of aircraft dam...
Abstract When an explosive eruption, such as a Plinian eruption, occurs, in order to estimate ash fa...
Quantifying the potential ash fall hazards from re-awakening volcanoes is a topic of great interest....
In this study, a real-time volcanic ash dispersion model called PUFF is applied to the Sakura-jima v...
As a result of the serious consequences of the 2010 Eyjafjallajökull eruption (Iceland) on civil avi...
Ash aggregation processes during explosive eruptions can effectively influence volcanic plume disper...
As a result of the serious consequences of the 2010 Eyjafjallajökull eruption (Iceland) on civil avi...
Volcanic ash is a major atmospheric hazard that has a significant impact on local populations and in...
PUFF is a numerical volcanic ash tracking model developed to simulate the behaviour of ash clouds in...
Volcanic ash poses an ongoing risk to the safety of airspace worldwide. The accuracy to which we can...
High-quality volcanic ash forecasts are crucial to minimize the economic impact of volcanic hazards...
Hazard analysis at caldera volcanoes is challenging due to the wide range of eruptive and environmen...
Volcanic ash can interact with the earth system on many temporal and spatial scales and is a signifi...
During the sub-plinian eruptions of Mt. Shinmoedake (Japan) on 26–27 January 2011 a significant amou...
Abstract. We model the transport and subsequent deposition of ash from Chaitén volcano, Chile, duri...
Observing volcanic ash dispersion becomes critical following the abundance incidents of aircraft dam...
Abstract When an explosive eruption, such as a Plinian eruption, occurs, in order to estimate ash fa...
Quantifying the potential ash fall hazards from re-awakening volcanoes is a topic of great interest....