MoT-PSA: a two-layer depth-averaged model for simulation of powder snow avalanches on 3-D terrain

IF 2.5 4区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Hervé Vicari, Dieter Issler
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引用次数: 0

Abstract

For snow-avalanche hazard mapping, one needs efficient tools that nevertheless capture the essential physical processes. The code MoT-PSA (Method of Transport – Powder Snow Avalanche) described here is based on the two-layer depth-averaged formulation for mixed snow avalanches developed by Eglit and co-workers in the 1980s but is extended to 3-D terrain and uses a fast numerical scheme based on the method of transport. Compared to previous works, we introduce novel formulations for the suspension and deposition of snow from the dense core. Snow cover and air entrainment are quantified with physics-based models. A sensitivity study of the model parameters on an idealized topography shows that both the dense core and the parameters of the powder snow cloud (PSC) governing particle suspension and settling significantly affect the dynamics. As expected, we observe that snow cover entrainment favours the formation of large PSCs with long runout. The powder-snow avalanche that occurred in Lom (Norway) on 27 February 2020 is back-calculated using MoT-PSA. With plausible parameter values, the model reproduces the dense core stopping at the gully's base and the dilute PSC travelling across the frozen lake for almost 1 km.

MoT-PSA:用于模拟三维地形粉雪崩的双层深度平均模型
要绘制雪崩危害图,我们需要能捕捉到基本物理过程的高效工具。这里介绍的 MoT-PSA(传输法-粉雪雪崩)代码基于 Eglit 及其合作者在 20 世纪 80 年代开发的混合雪崩双层深度平均公式,但扩展到了三维地形,并使用了基于传输法的快速数值方案。与之前的研究相比,我们引入了新的计算公式,用于计算雪从致密核心的悬浮和沉积。积雪覆盖和空气夹带通过基于物理的模型进行量化。对模型参数在理想化地形上的敏感性研究表明,致密核心和粉末雪云(PSC)参数对颗粒悬浮和沉降的动态影响很大。正如预期的那样,我们观察到,雪盖夹带有利于形成具有较长径流的大型粉雪云。使用 MoT-PSA 对 2020 年 2 月 27 日发生在挪威洛姆的粉雪雪崩进行了反向计算。在参数值合理的情况下,该模型再现了停在沟底的密集核心和在冰冻湖面上行进近 1 公里的稀释 PSC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annals of Glaciology
Annals of Glaciology GEOGRAPHY, PHYSICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
8.20
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Annals of Glaciology publishes original scientific articles and letters in selected aspects of glaciology-the study of ice. Each issue of the Annals is thematic, focussing on a specific subject. The Council of the International Glaciological Society welcomes proposals for thematic issues from the glaciological community. Once a theme is approved, the Council appoints an Associate Chief Editor and a team of Scientific Editors to handle the submission, peer review and publication of papers.
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