首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Dykes and structures of the NE rift of Tenerife, Canary Islands: A record of stabilisation and destabilisation of ocean island rift zones
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Dykes and structures of the NE rift of Tenerife, Canary Islands: A record of stabilisation and destabilisation of ocean island rift zones

机译:加那利群岛特内里费岛东北裂谷的堤防和结构:海洋裂谷带稳定和不稳定的记录

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摘要

Many oceanic island rift zones are associated with lateral sector collapses, and several models have been proposed to explain this link. The North-East Rift Zone (NERZ) of Tenerife Island, Spain offers an opportunity to explore this relationship, as three successive collapses are located on both sides of the rift. We have carried out a systematic and detailed mapping campaign on the rift zone, including analysis of about 400 dykes. We recorded dyke morphology, thickness, composition, internal textural features and orientation to provide a catalogue of the characteristics of rift zone dykes. Dykes were intruded along the rift, but also radiate from several nodes along the rift and form en échelon sets along the walls of collapse scars. A striking characteristic of the dykes along the collapse scars is that they dip away from rift or embayment axes and are oblique to the collapse walls. This dyke pattern is consistent with the lateral spreading of the sectors long before the collapse events. The slump sides would create the necessary strike-slip movement to promote en échelon dyke patterns. The spreading flank would probably involve a basal decollement. Lateral flank spreading could have been generated by the intense intrusive activity along the rift but sectorial spreading in turn focused intrusive activity and allowed the development of deep intra-volcanic intrusive complexes. With continued magma supply, spreading caused temporary stabilisation of the rift by reducing slopes and relaxing stress. However, as magmatic intrusion persisted, a critical point was reached, beyond which further intrusion led to large-scale flank failure and sector collapse. During the early stages of growth, the rift could have been influenced by regional stress/strain fields and by pre-existing oceanic structures, but its later and mature development probably depended largely on the local volcanic and magmatic stress/strain fields that are effectively controlled by the rift zone growth, the intrusive complex development, the flank creep, the speed of flank deformation and the associated changes in topography. Using different approaches, a similar rift evolution has been proposed in volcanic oceanic islands elsewhere, showing that this model likely reflects a general and widespread process. This study, however, shows that the idea that dykes orient simply parallel to the rift or to the collapse scar walls is too simple; instead, a dynamic interplay between external factors (e. g. collapse, erosion) and internal forces (e. g. intrusions) is envisaged. This model thus provides a geological framework to understand the evolution of the NERZ and may help to predict developments in similar oceanic volcanoes elsewhere.
机译:许多海洋岛裂谷带与侧向扇形塌陷有关,并且已经提出了几种模型来解释这种联系。西班牙特内里费岛的东北裂谷带(NERZ)提供了探索这种关系的机会,因为裂谷的两侧连续发生了三场坍塌。我们在裂谷带进行了系统而详细的制图活动,包括对约400个堤防的分析。我们记录了堤防的形态,厚度,成分,内部构造特征和方向,以提供裂谷堤防特征的目录。堤防沿着裂谷侵入,但也从裂谷的几个结点辐射开来,并沿着坍塌的伤痕壁形成enéchelon集合。沿塌陷疤痕形成的堤防的一个显着特征是,它们从裂谷或着陆轴上倾斜下来,并倾斜于塌陷壁。这种堤坝形态与坍塌事件发生之前很久的扇形体横向扩散是一致的。坍塌的一侧将产生必要的走滑运动,以促进恩施克朗堤防模式。蔓延的侧翼可能涉及基底弯曲。沿裂谷的强烈侵入活动可能产生了侧翼展布,但扇形散布又集中了侵入活动,并允许开发深部火山岩侵入复合物。随着岩浆供应的持续增加,裂谷通过减少坡度和减轻应力而引起了裂谷的暂时稳定。但是,随着岩浆侵入的持续存在,达到了一个临界点,超过这个临界点,进一步侵入会导致大规模的侧翼破坏和扇形塌陷。在增长的早期,裂谷可能受到区域应力/应变场和既有海洋结构的影响,但其后期和成熟发展可能很大程度上取决于有效控制的当地火山和岩浆应力/应变场。通过裂谷带的生长,侵入性复杂构造的发展,侧面蠕变,侧面变形的速度以及相关的地形变化。使用不同的方法,已经在其他地方的火山海洋岛上提出了类似的裂谷演化,表明该模型可能反映了一个普遍而广泛的过程。然而,这项研究表明,堤坝定向成与裂痕或塌陷疤痕壁平行的想法太简单了。相反,设想了外部因素(例如坍塌,侵蚀)和内部力(例如侵入)之间的动态相互作用。因此,该模型提供了一个地质框架,以了解NERZ的演变,并可能有助于预测其他地方类似海洋火山的发展。

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