首页> 外文期刊>Journal of Volcanology and Geothermal Research >The 2014-2015 complex collapse of the Baroarbunga caldera, Iceland, revealed by seismic moment tensors
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The 2014-2015 complex collapse of the Baroarbunga caldera, Iceland, revealed by seismic moment tensors

机译:2014-2015 Baroarbunga Caldera,冰岛的复杂崩溃,由地震时刻张量透露

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Between August 2014 and February 2015, a caldera collapse process in Baroarbunga volcano accompanied a fissure eruption at the Holuhraun lava field after magma had propagated laterally 45 km from the Baroarbunga magma chamber to the lava field. The Icelandic Meteorological Office (IMO) reported around 30,000 earthquakes at the caldera, including more than 70 earthquakes with moment magnitude M-W = 5.0. We built a moment tensor catalog of around 230 seismic events at the caldera with MW between 3.7 and 5.5 using a waveform inversion method. We identified five event families based on focal mechanisms, double couple (DC) and compensated linear vector dipole (CLVD) components, epicentral distribution relative to the caldera center, and time of occurrence. The main characteristics of these families are (1) DC to CLVD normal faulting events with steep (50 degrees-70 degrees) to near-vertical (70 degrees) dip angles on the northern side of the caldera; (2) DC to CLVD normal events with predominant steep (50 degrees-70 degrees) dip angles on the southern side of the caldera; (3) intra-caldera oblique strike-slip events; and (4) thrust events at the eastern side of the caldera with a horizontal tension axis compensated linear vector dipole (T-CLVD) component. Each family provided new insights about the Baroarbunga collapse mechanism such as (1) a systematic increase in the CLVD component with magnitude, corroborating that the curvature in the ring fault is the likely cause for the vertical CLVD moment tensors observed for the largest events; (2) seismic evidence of near-vertical dip angles in agreement with the vertical faults observed in many calderas worldwide, and numerical and analog models of caldera collapse structures; (3) intra-caldera oblique and strike-slip events on the western side of the caldera occurred by asymmetric collapse; (4) thrust horizontal T-CLVD events observed at the last stage of the eruption, possibly related to a viscoelastic response. (C) 2021 Elsevier B.V. All rights reserved.
机译:2014年8月至2015年2月,巴罗拉邦峡谷的火山口崩溃过程伴随着麦克劳伦熔岩场的裂缝爆发,岩浆野马在距离巴罗巴彭山岩浆室横向45公里到熔岩田。冰岛气象办公室(IMO)报告了大约30,000次地震,包括超过70个地震,片刻幅度m-w& = 5.0。我们在Caldera在3.7和5.5之间的Caldera在Caldera中建立了大约230个地震事件的时刻张浪潮目录,使用波形反转方法。我们确定了基于焦点机制,双夫妇(DC)和补偿的线性载体偶极子(CLVD)组分,相对于卡尔德拉中心的震中分布以及发生时间的焦点机制。这些家庭的主要特征是(1)DC到CLVD正常断层事件,陡峭(50度-70度)到CALDERA北侧的接近垂直(& 70度)垂直角; (2)DC到CLVD正常事件,其陡峭的陡峭(50度-70度)垂直角在火山口的南侧倾角; (3)卡尔德州内倾斜罢工事件; (4)带有水平张力轴补偿线性矢量偶极子(T-CLVD)组件的CALDERA东侧的推力事件。每个家庭都为Baroarbunga崩溃机制提供了新的见解,如(1)CLVD组件的系统增加,响起,恒定故障中的曲率是垂直CLVD矩所观察到最大事件的可能性; (2)与在全球许多火山口中观察到的垂直故障的近似垂直垂直角度的地震证据,以及Caldera崩溃结构的数值和模拟模型; (3)Caldera西侧的Caldera内倾斜和滑行事件发生不对称崩溃; (4)在喷发的最后阶段观察到的推力水平T-CLVD事件,可能与粘弹性反应有关。 (c)2021 elestvier b.v.保留所有权利。

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