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Structural and paleostress analysis within a fossil slow-spreading ridge: Tectonic processes involved during ocean expansion

机译:化石慢速扩散脊内的结构和古老人组织分析:海洋扩张期间涉及的构造过程

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This study aims to decipher the spatio-temporal chronology of tectonic processes leading to ocean widening at a slow-spreading oceanic ridge axis, involving mantle and gabbro exhumation and volcanism. Structural and petrographic studies of deformed lithologies were performed on peridotites, gabbros and basalts from the Chenaillet ophiolite (Alps, France). Inversion of fault-slip data reveals N030 degrees and N060 degrees sigma(3) paleostress trends. The dominant N030 degrees extension, is consistent with the NNW-SSE direction of volcano feeder-dykes and ENE dipping low-angle normal faults crosscutting the mantle. The N060 degrees extension accords with the mantle dome structure formation to the east. Low-angle faults intersect roots of volcanoes that thus belong to their hanging walls. Hydrothermalism is contemporaneous with or postdates low-angle faulting. A feeder-dyke major virgation northwards, synchronous with eruptions, suggests a dextral transform fault consistent with a N120 degrees sigma(2). Oceanic expansion mechanisms are clarified. At the surface, magma eruption occurs along on-axis active high-angle normal faults, their footwalls enabling mantle exhumation. At depth, off-axis high-angle faults become low-angle faults as they spread at shallow level. With westward drift of the lithosphere, the uppermost levels of the ridge shift westward faster, such that volcanoes move to an off-axis position while their roots are cut by low-angle faults.
机译:本研究旨在破译构造过程的时空年表,导致海洋扩大的海洋脊柱轴,涉及地幔和加布布罗挖掘和火山。在Chenaillet Ophiolite(阿尔卑斯山,法国)的恒星,Gabbros和玄武岩上进行了变形岩性的结构和岩图像研究。故障滑动数据的反转显示N030度和N060度Sigma(3)普华普雷斯趋势。主导N030度延伸,与火山饲养器 - 堤坝的NNW-SSE方向一致,倾倒低角度正常断层横切地幔。 N060度延伸符合东部的地幔圆顶结构形成。低角度故障的火山根系,因此属于悬挂墙壁。水热性是与低角度断层的同时性的或延迟。北方的饲料 - Dyke主要病毒,与爆发同步,表明右侧变换故障与N120Σ(2)一致。澄清了海洋膨胀机制。在表面,岩浆喷发沿着轴上的主动大角度常规故障发生,其脚踏件能够挖掘。在深度时,轴外高角度故障在浅层处传播时变成低角度故障。随着岩石圈的向西漂移,脊的最高水平越来越快,使得火山移动到轴上的位置,同时通过低角度断层切割它们的根。

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