首页> 外文期刊>Journal of Volcanology and Geothermal Research >Buildings vs. ballistics: Quantifying the vulnerability of buildings to volcanic ballistic impacts using field studies and pneumatic cannon experiments
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Buildings vs. ballistics: Quantifying the vulnerability of buildings to volcanic ballistic impacts using field studies and pneumatic cannon experiments

机译:建筑物与弹道:通过实地研究和气动加农炮实验量化建筑物对火山弹道影响的脆弱性

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Recent casualties in volcanic eruptions due to trauma from blocks and bombs necessitate more rigorous, ballistic specific risk assessment. Quantitative assessments are limited by a lack of experimental and field data on the vulnerability of buildings to ballistic hazards. An improved, quantitative understanding of building vulnerability to ballistic impacts is required for informing appropriate life safety actions and other risk reduction strategies. We assessed ballistic impacts to buildings from eruptions at Usu Volcano and Mt. Ontake in Japan and compiled available impact data from eruptions elsewhere to identify common damage patterns from ballistic impacts to buildings. We additionally completed a series of cannon experiments which simulate ballistic block impacts to building claddings to investigate their performance over a range of ballistic projectile velocities, masses and energies. Our experiments provide new insights by quantifying (1) the hazard associated with post-impact shrapnel from building and rock fragments; (2) the effect of impact obliquity on damage; and (3) the additional impact resistance buildings possess when claddings are struck in areas directly supported by framing components. This was not well identified in previous work which may have underestimated building vulnerability to ballistic hazards. To improve assessment of building vulnerability to ballistics, we use our experimental and field data to develop quantitative vulnerability models known as fragility functions. Our fragility functions and field studies show that although unreinforced buildings are highly vulnerable to large ballistics (>20 cm diameter), they can still provide shelter, preventing death during eruptions. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于块和炸弹造成的创伤,最近火山爆发造成人员伤亡,因此需要进行更加严格的弹道特定风险评估。由于缺乏有关建筑物易受弹道危害影响的实验和现场数据,定量评估受到限制。需要更好的量化了解建筑物受到弹道影响的脆弱性,以告知适当的生命安全措施和其他降低风险的策略。我们评估了乌苏火山和山火山爆发对建筑物造成的弹道冲击。进入日本并汇编了其他地方爆发的可用撞击数据,以识别弹道撞击建筑物的常见损坏方式。我们还完成了一系列加农炮实验,模拟了弹道对建筑立面的冲击,以研究其在一系列弹道速度,质量和能量下的性能。我们的实验通过量化(1)与建筑物和岩石碎片的撞击后弹片有关的危害提供了新的见解; (2)冲击倾角对破坏的影响; (3)当在由框架构件直接支撑的区域中敲击覆层时,建筑物具有附加的抗冲击性。在以前的工作中并没有很好地确定这一点,这可能低估了建筑物对弹道危害的脆弱性。为了改善对弹道系统易损性的评估,我们使用实验数据和现场数据来开发称为易损性函数的定量易损性模型。我们的脆弱性功能和现场研究表明,尽管未加固的建筑物极易受到大型弹道(直径大于20厘米)的攻击,但它们仍可以提供庇护所,防止喷发期间死亡。 (C)2017 Elsevier B.V.保留所有权利。

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