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Modelling expected physical impacts and human casualties from explosive volcanic eruptions

机译:爆炸性火山爆发建模预期的身体影响和人类伤亡

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A multi-hazard, multi-vulnerability impact model has been developed for application to European volcanoes that could significantly damage human settlements. This impact model is based on volcanological analyses of the potential hazards and hazard intensities coupled with engineering analyses of the vulnerability to these hazards of residential buildings in four European locations threatened by explosive volcanic eruptions. For a given case study site, inputs to the model are population data, building characteristics, volcano scenarios as a series of hazard intensities, and scenarios such as the time of eruption or the percentage of the population which has been evacuated. Outputs are the rates of fatalities, seriously injured casualties, and destroyed buildings for a given scenario. These results are displayed in a GIS, thereby presenting risk maps which are easy to use for presenting to public officials, the media, and the public. Technical limitations of the model are discussed and future planned developments are considered. This work contributes to the EU-funded project EXPLORIS (Explosive Eruption Risk and Decision Support for EU Populations Threatened by Volcanoes, EVR1-2001-00047). ?
机译:已经开发了多危险,多漏洞影响模型,用于应用于欧洲火山,这可能会显着损害人类住区。这种影响模型基于潜在危害和危害强度的波动性分析,其危及与爆炸性火山爆发威胁的四个欧洲地区威胁的这些危险的脆弱性的工程分析。对于给定的案例研究网站,模型的输入是人口数据,建筑特征,火山场景作为一系列危害强度,以及爆发时的情景或已经疏散的人口的百分比。产出是死亡率,严重受伤的伤亡和销毁特定情景的建筑物。这些结果显示在GIS中,从而呈现风险地图,易于用于向公共官员,媒体和公众展示。讨论了模型的技术限制,并考虑了未来的计划发展。这项工作有助于欧盟资助的项目探索(爆炸性爆发风险和对火山威胁的欧盟人口的爆发风险和决策支持,EVR1-2001-00047)。 ?

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