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首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >Heat flux-based strategies for the thermal monitoring of sub-fumarolic areas: Examples from Vulcano and La Soufriere de Guadeloupe
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Heat flux-based strategies for the thermal monitoring of sub-fumarolic areas: Examples from Vulcano and La Soufriere de Guadeloupe

机译:基于热通量的对次干旱地区进行热监测的策略:来自Vulcano和La Soufriere de Guadeloupe的示例

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摘要

Although it is relatively easy to set-up, the monitoring of soil temperature in sub-fumarolic areas is quite rarely used to monitor the evolution of hydrothermal systems. Indeed, measurements are highly sensitive to environmental conditions, in particular daily and seasonal variations of atmospheric temperatures and rainfalls, which can be only partially filtered by the established statistical analysis. In this paper, we develop two innovative processing methods, both based on the computation of the heat flux in the soil. The upward heat flux method (UHF), designed for dry environments, consists in computing both the conductive and convective components of the heat flux,between two thermocouples placed vertically. In the cases of wet environments, the excess of total heat method (ETH) allows the integration of rain gauges data in order to correct the heat balance from the superficial cooling effect of the precipitations. The performances of both processing techniques are faced to established methods.(temperature gradient and coefficient of determination) on soil temperature time series from two test volcanoes. At La Fossa di Vulcano (Italy), the UHF method undoubtedly detects three thermal crises between 2009 and 2012, enabling to quantify not only the intensity but also the precise timing of the heat flux increase with respect to corresponding geochemical and seismic crises. At La Soufriere de Guadeloupe (French Lesser Antilles), despite large rainfalls dramatically influencing the thermal behavior of the soil, a constant geothermal heat flux is retrieved by the ETH method, confirming the absence of fumarolic crisis during the observation period (February-August 2010). Being quantitative, robust, and usable in almost any context of sub-fumarolic zones, our two heat flux-based methods increase the potential of soil temperature for the monitoring, but also the general interpretation of fumarolic crises together with geochemical and seismological observations. A spreadsheet allowing direct computation of UHF and ETH is provided as supplemental material. (C) 2017 Elsevier B.V. All rights reserved.
机译:尽管设置起来相对容易,但在次富马地区的土壤温度监测却很少用于监测热液系统的演化。实际上,测量结果对环境条件高度敏感,尤其是大气温度和降雨量的每日和季节性变化,这些变化只能通过已建立的统计分析进行部分过滤。在本文中,我们开发了两种创新的处理方法,均基于对土壤中热通量的计算。向上热通量法(UHF)是为干燥环境设计的,它包括计算垂直放置的两个热电偶之间的热通量的传导和对流分量。在潮湿的环境中,过量的总热量法(ETH)允许对雨量计数据进行积分,以便根据降水的表面冷却效应校正热量平衡。两种处理技术的性能都面临既定的方法。温度梯度和确定系数)来自两个试验火山的土壤温度时间序列。在意大利的La Fossa di Vulcano,UHF方法无疑可以检测到2009年至2012年之间的三个热危机,从而不仅可以量化强度,而且可以量化与相应的地球化学和地震危机有关的热通量增加的精确时间。在瓜德罗普岛的拉苏弗里耶尔(法国小安的列斯),尽管大降雨严重影响了土壤的热行为,但通过ETH方法获得了恒定的地热通量,这证实了在观察期内没有形成富马酸危机(2010年2月至8月) )。我们的两种基于热通量的方法都具有定量,鲁棒性,并且几乎可以在次火山岩带的任何环境中使用,因此增加了监测土壤温度的潜力,同时也增加了对火山岩危机以及地球化学和地震观测资料的一般解释。提供了可直接计算UHF和ETH的电子表格作为补充材料。 (C)2017 Elsevier B.V.保留所有权利。

著录项

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  • 作者单位

    Ist Nazl Geofis & Vulcanol, Via Vigna Murata 605, I-00143 Rome, Italy|Ludwig Maximilians Univ Munchen LMU, Dept Earth & Environm Sci, Theresienstr 41, D-80333 Munich, Germany;

    Ist Nazl Geofis & Vulcanol, Via Vigna Murata 605, I-00143 Rome, Italy;

    Univ Reunion, Sorbonne Paris Cite, Inst Phys Globe Paris, CNRS,Lab GeoSci Reunion,UMR 7154, 15 Ave Rene Cassin,CS 92003, F-97744 St Denis, Reunion, France;

    Univ Reunion, Sorbonne Paris Cite, Inst Phys Globe Paris, CNRS,Lab GeoSci Reunion,UMR 7154, 15 Ave Rene Cassin,CS 92003, F-97744 St Denis, Reunion, France;

    Ist Nazl Geofis & Vulcanol, Osservatorio Etneo, Piazza Roma 2, I-95125 Catania, Italy;

    CSIC, ICTJA, C Lluis Sole & Sahara S-N, Barcelona, Spain;

    Univ Miami, Rosenstiel Sch Marine & Atmospher Sci, Dept Marine Geosci, 4600 Rickenbacker Causeway, Miami, FL 33149 USA;

    Ist Nazl Geofis & Vulcanol, Via Ugo la Malfa 153, I-90146 Palermo, Italy;

    Ist Nazl Geofis & Vulcanol, Osservatorio Etneo, Piazza Roma 2, I-95125 Catania, Italy;

    Ist Nazl Geofis & Vulcanol, Via Ugo la Malfa 153, I-90146 Palermo, Italy;

    Eni Angola, Ave Lenine 58, Luanda, Angola;

    Univ Paris Diderot, Sorbonne Paris Cite, Inst Phys Globe Paris, CNRS,Observ Volcanol Piton Fournaise,UMR 7154, F-97418 La Plain Des Cafres, La Reunion, France;

    Ist Nazl Geofis & Vulcanol, Via Ugo la Malfa 153, I-90146 Palermo, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sub-fumarolic zones; Heat flux; Soil temperature monitoring; Fumarolic crises; Vulcano; La Soufriere de Guadeloupe;

    机译:次级火山岩带;热通量;土壤温度监测;火山岩危机;伏尔卡诺火山;瓜德罗普岛的拉索夫里耶尔;

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