首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Understanding cyclic seismicity and ground deformation patterns at volcanoes: Intriguing lessons from Tungurahua volcano, Ecuador
【24h】

Understanding cyclic seismicity and ground deformation patterns at volcanoes: Intriguing lessons from Tungurahua volcano, Ecuador

机译:了解火山的循环地震性和地面变形模式:厄瓜多尔云瓦卢瓦火山的有趣课程

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

AbstractCyclic seismicity and ground deformation patterns are observed on many volcanoes worldwide where seismic swarms and the tilt of the volcanic flanks provide sensitive tools to assess the state of volcanic activity. Ground deformation at active volcanoes is often interpreted as pressure changes in a magmatic reservoir, and tilt is simply translated accordingly into inflation and deflation of such a reservoir. Tilt data recorded by an instrument in the summit area of Tungurahua volcano in Ecuador, however, show an intriguing and unexpected behaviour on several occasions: prior to a Vulcanian explosion when apressurisationof the system would be expected, the tilt signal declines significantly, hence indicatingdepressurisation. At the same time, seismicity increases drastically. Envisaging that such a pattern could carry the potential to forecast Vulcanian explosions on Tungurahua, we use numerical modelling and reproduce the observed tilt patterns in both space and time. We demonstrate that the tilt signal can be more easily explained as caused by shear stress due to viscous flow resistance, rather than by pressurisation of the magmatic plumbing system. In general, our numerical models prove that if magma shear viscosity and ascent rate are high enough, the resulting shear stress is sufficient to generate a tilt signal as observed on Tungurahua. Furthermore, we address the interdependence of tilt and seismicity through shear stress partitioning and suggest that a joint interpretation of tilt and seismicity can shed new light on the eruption potential of silicic volcanoes.
机译:<![cdata [ Abstract 在全世界的许多火山上观察到循环地震性和地面变形模式,其中地震群和火山侧面的倾斜提供敏感的工具来评估状态火山活动。在活性火山上的地面变形通常被解释为岩浆储存器中的压力变化,并且倾斜简单地平移到这种储层的膨胀和放气。然而,在厄瓜多尔的云胡拉火山火山火山的峰会领域记录的倾斜数据显示了几次有趣和意外的行为:在普通的爆炸之前,当加压系统的斜体时将是预期的,倾斜信号显着下降,因此表示减免。与此同时,地震性急剧增加。设想这种模式可以承载巨大的岩土爆炸潜力,我们使用数值模型并在空间和时间再现观察到的倾斜模式。我们证明可以更容易地解释倾斜信号,因为由于粘性流动阻力而不是通过岩浆管道系统的压力而引起的。通常,我们的数值模型证明,如果岩浆剪切粘度和上升速率足够高,则产生的剪切应力足以产生倾斜信号,如在Tungurahua上观察到的倾斜信号。此外,我们通过剪切应力分配来解决倾斜和地震性的相互依存性,并表明对倾斜和地震性的联合解释可以揭示硅藻的喷发潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号