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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 >Evolution of a lateral dike intrusion revealed by relatively-relocated dike -induced earthquakes: The 2014-15 Bardarbunga-Holuhraun rifting event, Iceland
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Evolution of a lateral dike intrusion revealed by relatively-relocated dike -induced earthquakes: The 2014-15 Bardarbunga-Holuhraun rifting event, Iceland

机译:相对迁移的堤防诱导地震揭示的横向堤防入侵的演变:2014-15 Bardarbunga-Holuhraun rifting赛事,冰岛

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Understanding dikes is vital as they serve both as bodies that build the crust and as conduits that feed eruptions, and must be monitored to evaluate volcanic hazard. During the 2014-15 Bardarbunga rifting event, Iceland, intense seismicity accompanied the intrusion of a similar to 50 km lateral dike which culminated in a 6 month long eruption. We here present relocations of earthquakes induced by the lateral dike intrusion, using cross-correlated, sub-sample relative travel times. The similar to 100 m spatial resolution achieved reveals the complexity of the dike propagation pathway and dynamics (jerky, segmented), and allows us to address the precise relationship between the dike and seismicity, with direct implications for hazard monitoring. The spatio-temporal characteristics of the induced seismicity can be directly linked in the first instance to propagation of the tip and opening of the dike, and following this - after dike opening -indicate a relationship with magma pressure changes (i.e. dike inflation/deflation), followed by a general 'post-opening' decay. Seismicity occurs only at the base of the dike, where dike-imposed stresses combined with the background tectonic stress (from regional extension over 200 yr since last rifting) -are sufficient to induce failure of pre-existing weaknesses in the crust, while the greatest opening is at shallower depths. Emplacement oblique to the spreading ridge resulted in left-lateral shear motion along the distal dike section (studied here), and a prevalence of left-lateral shear failure. Fault plane strikes are predominately independent of the orientation of lineations delineated by the hypocenters, indicating that they are controlled by the underlying host rock fabric. This high-resolution study provides unprecedented opportunity for comparison with both geodetic and field (frozen dike) observations, and development and consolidation of analytical and analogue models, with implications for rifting processes and r
机译:了解堤坝是至关重要的,因为它们都作为构建地壳的尸体,并且作为饲料爆发的导管,并且必须被监测以评估火山危险。在2014 - 15年BARDARBUNGA rifting赛事中,冰岛,激烈的地震性伴随着类似于50公里的横向堤防的侵入,其中在6个月的长发中爆发。我们在这里使用横向堤入侵的地震迁移,使用互相关的子样本相对行程时间。实现的类似于100米的空间分辨率揭示了堤防传播途径和动力学的复杂性(生涩,分段),并允许我们解决堤防和地震性之间的精确关系,具有对危害监测的直接影响。诱导地震性的时空特性可以在第一例中直接连接到堤防的尖端和打开堤,并在堤防开放后 - 与岩浆压力变化的关系(即堤防通胀/通货紧缩) ,随后是一般的“开幕式”腐烂。地震性仅发生在堤防的底部,其中堤防施加的应力与背景构造应力(从地区延伸超过最后一轮串以自上次漂流以来) - 足以诱导外壳预先存在的弱点失败最大的开放是深入的深度。对扩散脊的施加倾斜导致沿远侧堤段的左侧剪切运动(在此研究),以及左侧剪切失效的患病率。故障平面撞击主要是独立于低缩进者描绘的基线eations的取向,表明它们由下面的主体岩石织物控制。这种高分辨率研究提供了前所未有的机会,可与大地测量和领域(冷冻堤)观察,以及分析和模拟模型的开发和整合,具有对河流流程和r的影响

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