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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Lava flow hazard modeling during the 2014-2015 Fogo eruption, Cape Verde
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Lava flow hazard modeling during the 2014-2015 Fogo eruption, Cape Verde

机译:佛得角2014-2015年Fogo爆发期间的熔岩流危害模型

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Satellite remote sensing techniques and lava flow forecasting models have been combined to enable a rapid response during effusive crises at poorly monitored volcanoes. Here we used the HOTSAT satellite thermal monitoring system and the MAGFLOW lava flow emplacement model to forecast lava flow hazards during the 2014-2015 Fogo eruption. In many ways this was one of the major effusive eruption crises of recent years, since the lava flows actually invaded populated areas. Combining satellite data and modeling allowed mapping of the probable evolution of lava flow fields while the eruption was ongoing and rapidly gaining asmuch relevant information as possible. HOTSAT was used to promptly analyze MODIS and SEVIRI data to output hot spot location, lava thermal flux, and effusion rate estimation. This output was used to drive the MAGFLOW simulations of lava flow paths and to continuously update flow simulations. We also show how Landsat 8 OLI and EO-1 ALI images complement the field observations for tracking the flow front position through time and adding considerable data on lava flow advancement to validate the results of numerical simulations. The integration of satellite data and modeling offers great promise in providing a unified and efficient system for global assessment and real-time response to effusive eruptions, including (i) the current state of the effusive activity, (ii) the probable evolution of the lava flow field, and (iii) the potential impact of lava flows.
机译:结合了卫星遥感技术和熔岩流预测模型,可以在监测不良的火山爆发爆发性危机期间做出快速反应。在这里,我们使用HOTSAT卫星热监测系统和MAGFLOW熔岩流进位模型来预测2014-2015年Fogo爆发期间熔岩流的危害。在许多方面,这是近年来主要的喷发性危机之一,因为熔岩流实际上侵入了人口稠密的地区。结合卫星数据和建模可以在喷发进行期间绘制熔岩流场的可能演变图,并迅速获取尽可能多的相关信息。 HOTSAT用于迅速分析MODIS和SEVIRI数据,以输出热点位置,熔岩热通量和积水率估算。此输出用于驱动熔岩流路径的MAGFLOW模拟并不断更新流动模拟。我们还展示了Landsat 8 OLI和EO-1 ALI图像如何与野外观测相辅相成,以跟踪随时间的流动前沿位置,并添加有关熔岩流动进展的大量数据以验证数值模拟的结果。卫星数据和建模的集成为提供一个统一而有效的系统以进行全球评估和对喷发性喷发的实时响应提供了广阔的前景,这些系统包括(i)喷发性活动的当前状态,(ii)熔岩可能发生的演化流场,以及(iii)熔岩流的潜在影响。

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