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Forecasting volcanic ash dispersal and coeval resuspension during the April-May 2015 Calbuco eruption

机译:预测2015年4月至5月Calbuco爆发期间火山灰的扩散和近代再悬浮

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摘要

Atmospheric dispersion of volcanic ash from explosive eruptions or from subsequent fallout deposit resuspension causes a range of impacts and disruptions on human activities and ecosystems. The April-May 2015 Calbuco eruption in Chile involved eruption and resuspension activities. We overview the chronology, effects, and products resulting from these events, in order to validate an operational forecast strategy for tephra dispersal. The modelling strategy builds on coupling the meteorological Weather Research and Forecasting (WRF/ARW) model with the FALL3D dispersal model for eruptive and resuspension processes. The eruption modelling considers two distinct particle granulometries, a preliminary first guess distribution used operationally when no field data was available yet, and a refined distribution based on field measurements. Volcanological inputs were inferred from eruption reports and results from an Argentina-Chilean ash sample data network, which performed in-situ sampling during the eruption. In order to validate the modelling strategy, results were compared with satellite retrievals and ground deposit measurements. Results indicate that the WRF-FALL3D modelling system can provide reasonable forecasts in both eruption and resuspension modes, particularly when the adjusted granulometry is considered. The study also highlights the importance of having dedicated datasets of active volcanoes furnishing first-guess model inputs during the early stages of an eruption. (C) 2016 Elsevier B.V. All rights reserved.
机译:爆炸性喷发或随后沉积物重悬引起的火山灰在大气中的扩散,对人类活动和生态系统造成一系列影响和破坏。 2015年4月至5月在智利发生的Calbuco爆发涉及爆发和重悬活动。我们概述了由这些事件引起的时间顺序,影响和产品,以验证蒂弗拉扩散的操作预测策略。该建模策略建立在将气象天气研究与预测(WRF / ARW)模型与FALL3D扩散模型耦合用于爆发和再悬浮过程的基础上。喷发模型考虑了两个不同的粒子粒度,当尚无现场数据可用时在操作上使用的初步第一猜测分布,以及基于现场测量的精确分布。从喷发报告和阿根廷-智利灰分样本数据网络的结果推断出火山学输入,该网络在喷发过程中进行了现场采样。为了验证建模策略,将结果与卫星取回和地面沉积物测量结果进行了比较。结果表明,WRF-FALL3D建模系统可以在喷发和重悬模式下提供合理的预测,尤其是在考虑了调整粒度的情况下。这项研究还强调了在喷发的早期阶段使用活动火山的专用数据集提供第一猜测模型输入的重要性。 (C)2016 Elsevier B.V.保留所有权利。

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    Univ Nacl Salta, CONICET, INENCO GEONORTE, Ave Bolivia 5150,A4408FVY, Salta, Argentina;

    Univ Nacl Salta, CONICET, INENCO GEONORTE, Ave Bolivia 5150,A4408FVY, Salta, Argentina;

    Consejo Nacl Invest Cient & Tecn, Buenos Aires, DF, Argentina|Serv Meteorol Nacl, Caba, Argentina;

    Univ Nacl Salta, CONICET, INENCO GEONORTE, Ave Bolivia 5150,A4408FVY, Salta, Argentina;

    Univ Nacl Comahue, CONICET, CRUB, INIBIOMA, San Carlos De Bariloche, Rio Negro, Argentina;

    BSC, Barcelona, Spain;

    Serv Meteorol Nacl, Caba, Argentina|Serv Hidrog Naval, Buenos Aires, DF, Argentina;

    Univ Nacl Salta, CONICET, INENCO GEONORTE, Ave Bolivia 5150,A4408FVY, Salta, Argentina;

    Univ Atacama, Dept Geol, Copiapo, Chile|Ctr Invest & Difus Volcanes Chile, Santiago, Chile;

    Consejo Nacl Invest Cient & Tecn, Buenos Aires, DF, Argentina|Serv Meteorol Nacl, Caba, Argentina|Comis Nacl Actividades Espaciales CONAE, Buenos Aires, DF, Argentina;

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  • 正文语种 eng
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  • 关键词

    Volcanic ash; Particle resuspension; Dispersion model; Calbuco;

    机译:火山灰;颗粒悬浮;分散模型;Calbuco;

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