Multiphase flow behaviour and hazard prediction of pyroclastic density currents

被引:68
|
作者
Lube, Gert [1 ]
Breard, Eric C. P. [2 ]
Esposti-Ongaro, Tomaso [3 ]
Dufek, Josef [2 ]
Brand, Brittany [4 ]
机构
[1] Massey Univ, Inst Geosci, Palmerston North, New Zealand
[2] Univ Oregon, Dept Earth Sci, Eugene, OR 97403 USA
[3] Ist Nazl Geofis & Vulcanol, Sez Pisa, Pisa, Italy
[4] Boise State Univ, Dept Geosci, Boise, ID 83725 USA
基金
美国国家科学基金会;
关键词
SOUFRIERE HILLS VOLCANO; MOUNT ST-HELENS; MERAPI; 2010; ERUPTION; 1980 LATERAL BLAST; UNZEN VOLCANO; DOME-COLLAPSE; EMPLACEMENT TEMPERATURE; CLUSTERING INSTABILITY; GRAVITY CURRENTS; HUMAN SURVIVAL;
D O I
10.1038/s43017-020-0064-8
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Pyroclastic density currents are complex multiphase flows originating from volcanic eruptions and account for almost a third of volcanic fatalities globally. This Review discusses recent advances in understanding of the complex internal processes within pyroclastic density currents and how these influence the flow dynamics and hazard footprints. Pyroclastic density currents (PDCs) are dangerous multiphase flows originating from volcanic eruptions. PDCs cause more than a third of volcanic fatalities globally and, therefore, development of robust PDC hazard models is a priority in volcanology and natural hazard science. However, the complexity of gas-particle interactions inside PDCs, as well as their hostile nature, makes quantitative measurements of internal flow properties, and the validation of hazard models, challenging. Within the last decade, major advances from large-scale experiments, field observations and computational and theoretical models have provided new insights into the enigmatic internal structure of PDCs and identified key processes behind their fluid-like motion. Recent developments have also revealed important links between newly recognized processes of mesoscale turbulence and PDC behaviour. In this Review, we consider how recent advances in PDC research close the gaps towards more robust hazard modelling, outline the need to measure the internal properties of natural flows using geophysical methods and identify critical future research challenges. Greater understanding of PDCs will also provide insights into the dynamics of other natural gravity currents and high-energy turbulent multiphase flows, such as debris avalanches and turbidity currents.
引用
收藏
页码:348 / 365
页数:18
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