The goal of this paper is to determine the parameters that control the aggregation efficiency and the growth rate of volcanic particles within the eruption column. Numerical experiments are performed with the plume model ATHAM (Active Tracer High resolution Atmospheric Model). In this study we employ the parameterizations described in a companion paper (this issue). The presence of hydrometeors promotes the aggregation of ash particles, which strongly increases their fall velocities and thus their environmental impact. The tephra mass is about two orders of magnitude greater than that of hydrometeors during typical Plinian eruptions without interaction of external water. Ice is highly dominant in comparison to liquid water (\u3e 99% by mass...
Most particles less than a few hundred micrometers in diameter, which fall from volcanic plumes, do ...
AbstractExplosive volcanic eruptions can release vast quantities of pyroclastic material into Earth'...
We develop a model to describe ash aggregates in a volcanic plume. The model is based on a solution...
The goal of this paper is to determine the parameters that control the aggregation efficiency and th...
The goal of this paper is to determine the parameters that control the aggregation efficiency and th...
3Abstract. Particle aggregation in eruption columns from explosive volcanoes is investigated by nume...
The aggregation of volcanic ash particles within the eruption column of explosive eruptions has been...
This Ph.D. thesis presents a quantitative description of the mechanisms that control the aggregation...
Although numerous hazard models exist to assess possible ash fallout from explosive volcanic eruptio...
Most volcanic ash particles with diameters. \u3c 63. μm settle from eruption clouds as particle agg...
The occurrence of particle aggregation has a dramatic effect on the transport and sedimentation of v...
© 2016 Elsevier Ltd. All rights reserved. Particle aggregation governs the sedimentation of small vo...
Eruption dynamics are sensitive to ash aggregation, and ash aggregates (e.g. accretionary lapilli) a...
3The parameterization includes the condensation of water vapor in the rising eruption column. The fo...
The scavenging of gases and particles in an explosive volcanic eruption plume has been studied by nu...
Most particles less than a few hundred micrometers in diameter, which fall from volcanic plumes, do ...
AbstractExplosive volcanic eruptions can release vast quantities of pyroclastic material into Earth'...
We develop a model to describe ash aggregates in a volcanic plume. The model is based on a solution...
The goal of this paper is to determine the parameters that control the aggregation efficiency and th...
The goal of this paper is to determine the parameters that control the aggregation efficiency and th...
3Abstract. Particle aggregation in eruption columns from explosive volcanoes is investigated by nume...
The aggregation of volcanic ash particles within the eruption column of explosive eruptions has been...
This Ph.D. thesis presents a quantitative description of the mechanisms that control the aggregation...
Although numerous hazard models exist to assess possible ash fallout from explosive volcanic eruptio...
Most volcanic ash particles with diameters. \u3c 63. μm settle from eruption clouds as particle agg...
The occurrence of particle aggregation has a dramatic effect on the transport and sedimentation of v...
© 2016 Elsevier Ltd. All rights reserved. Particle aggregation governs the sedimentation of small vo...
Eruption dynamics are sensitive to ash aggregation, and ash aggregates (e.g. accretionary lapilli) a...
3The parameterization includes the condensation of water vapor in the rising eruption column. The fo...
The scavenging of gases and particles in an explosive volcanic eruption plume has been studied by nu...
Most particles less than a few hundred micrometers in diameter, which fall from volcanic plumes, do ...
AbstractExplosive volcanic eruptions can release vast quantities of pyroclastic material into Earth'...
We develop a model to describe ash aggregates in a volcanic plume. The model is based on a solution...