论文标题

在动荡中的火山的热量和批量预算的多年视图:LaSoufrièredeGuadeloupe(法国西印度群岛)

A multi-decadal view of the heat and mass budget of a volcano in unrest: La Soufrière de Guadeloupe (French West Indies)

论文作者

Jessop, David E., Moune, Séverine, Moretti, Roberto, Gibert, Dominique, Komorowski, Jean-Christophe, Robert, Vincent, Heap, Michael J., Bosson, Alexis, Bonifacie, Magali, Deroussi, Sébastien, Dessert, Céline, Rosas-Carbajal, Marina, Lemarchand, Arnaud, Burtin, Arnaud

论文摘要

特别是在存在水热系统的情况下,许多火山通过从大厦内部到地面的水的运输输出大量热量。因此,热通量是评估火山活动和动荡的主要工具。我们使用机载的热摄像头调查以及通过温度探针,皮托管和多层测量值对LaSoufrièredeGuadeloupe(法国西印度群岛)进行火山动荡的审查。我们推断出烟气,地面和热弹簧输出的质量和热通量,并在2000--2020的一段时间内遵循这些输出。我们的结果与已发布的数据进行了比较,我们使用文献数据对热通量的时间变化进行了回顾性分析。 我们发现,火山发出的热量为36.5 +/- 7.9兆瓦,其中富马利亚热通量在28.3 +/- 6.8兆瓦时占主导地位。鉴于总加热面积为26780平方米,这相当于热通量密度为627 +/- 94 W/m2,这是具有热液系统的全球火山最高的,尤其是圆顶火山。然而,LasoufrièredeGuadeloupe的一个重大变化是,在山顶上开发了广泛的地面加热区域,在该地区的热量从2010年的0.2 +/- 0.1兆瓦增加到2020年的5.7 +/- 0.9 mW。这一变化与两种新高速公路的加速型烟雾同时加速了,并且与新高型烟雾相一致。我们的发现突出了LaSoufrièredeGuadeloupe的持续和增强监视和研究策略的重要性,其结果可用于更好地了解世界上全球的水热火山症。

Particularly in the presence of a hydrothermal system, many volcanoes output large quantities of heat through the transport of water from deep within the edifice to the surface. Thus, heat flux is a prime tool for evaluating volcanic activity and unrest. We review the volcanic unrest at La Soufrière de Guadeloupe (French West Indies) using an airborne thermal camera survey, and in-situ measurements of temperature and flow rate through temperature probes, Pitot-tube and MultiGAS measurements. We deduce mass and heat fluxes for the fumarolic, ground and thermal spring outputs and follow these over a period spanning 2000--2020. Our results are compared with published data and we performed a retrospective analysis of the temporal variations in heat flux over this period using the literature data. We find that the heat emitted by the volcano is 36.5 +/- 7.9 MW, of which the fumarolic heat flux is dominant at 28.3 +/- 6.8 MW. Given a total heated area of 26780 m2, this equates to a heat flux density of 627 +/- 94 W/m2, which is amongst the highest established for worldwide volcanoes with hydrothermal systems, particularly for dome volcanoes. A major change at La Soufrière de Guadeloupe, however, is the development of a widespread region of ground heating at the summit where heat output has increased from 0.2 +/- 0.1 MW in 2010 to 5.7 +/- 0.9 MW in 2020. This change is concurrent with accelerating unrest at the volcano, and the emergence of two new high-flux fumaroles in recent years. Our findings highlight the importance of continued and enhanced surveillance and research strategies at La Soufrière de Guadeloupe, the results of which can be used to better understand hydrothermal volcanism the world over.

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