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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The limits of seaward spreading and slope instability at the continental margin offshore Mt Etna, imaged by high-resolution 2D seismic data
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The limits of seaward spreading and slope instability at the continental margin offshore Mt Etna, imaged by high-resolution 2D seismic data

机译:高分辨率二维地震数据对埃特纳火山沿岸大陆边缘向海扩展和边坡失稳的限制

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摘要

Mount Etna is the largest active volcano in Europe. Instability of its eastern flank is well documented onshore, and continuously monitored by geodetic and InSAR measurements. Little is known, however, about the offshore extension of the eastern volcano flank, defining a serious shortcoming in stability models. In order to better constrain the active tectonics of the continental margin offshore the eastern flank of the volcano, we acquired a new high-resolution 2D reflection seismic dataset. The data provide new insights into the heterogeneous geology and tectonics at the continental margin offshore Mt Etna. The submarine realm is characterized by different blocks, which are controlled by local-and regional tectonics. A compressional regime is found at the toe of the continental margin, which is bound to a complex basin system. Both, the clear link between on-and offshore tectonic structures as well as the compressional regime at the easternmost flank edge, indicate a continental margin gravitational collapse as well as spreading to be present at Mt Etna. Moreover, we find evidence for the offshore southern boundary of the moving flank, which is identified as a right lateral oblique fault north of Catania Canyon. Our findings suggest a coupled volcano edifice/continental margin instability at Mt Etna, demonstrating first order linkage between on-and offshore tectonic processes. (C) 2015 Elsevier B.V. All rights reserved.
机译:埃特纳火山是欧洲最大的活火山。它的东部侧面的不稳定性在陆地上有很好的记录,并通过大地测量和InSAR测量进行连续监测。然而,关于东部火山侧面的海上扩展知之甚少,这定义了稳定性模型的严重缺陷。为了更好地限制火山东部翼外大陆边缘的活跃构造,我们获取了一个新的高分辨率二维反射地震数据集。数据为埃特纳火山沿岸大陆边缘的异质地质和构造提供了新的见解。海底领域的特征在于不同的区块,这些区块由本地和区域构造控制。在大陆边缘的脚趾处发现了一种压缩机制,该机制与复杂的盆地系统绑定在一起。陆上和海上构造结构之间的明确联系以及最东侧的边缘的压缩状态都表明大陆边缘的重力塌陷以及在埃特纳火山上的扩散。此外,我们发现了运动侧面近海南部边界的证据,该边界被确定为卡塔尼亚峡谷以北的右斜斜断层。我们的发现表明,埃特纳火山火山构造/大陆边缘耦合不稳定性,证明了陆上和海上构造过程之间的一阶联系。 (C)2015 Elsevier B.V.保留所有权利。

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