首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Crystallographic preferred orientations of exhumed subduction channel rocks from the Eclogite Zone of the Tauern Window (Eastern Alps, Austria), and implications on rock elastic anisotropies at great depths
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Crystallographic preferred orientations of exhumed subduction channel rocks from the Eclogite Zone of the Tauern Window (Eastern Alps, Austria), and implications on rock elastic anisotropies at great depths

机译:陶恩窗(Eastn Alps,奥地利)的榴辉岩带发掘的俯冲槽岩石的晶体学优选取向及其对深部岩石弹性各向异性的影响

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Crystallographic preferred orientations (CPO) of rocks from an exhumed subduction channel of the Alpine orogen were determined using time-of-flight neutron diffraction. This method allows the investigation of large polymineralic samples and, more importantly, the application of full pattern fit methods to constrain CPOs of mineralogically complex rocks. Samples studied include intensely deformed fresh and retrogressed eclogites, as well as metasediments, which are interleaved with the eclogites in the subduction channel. From the CPO, seismic properties of the samples were calculated. P-wave anisotropies of the eclogite samples are fairly low, with an average of about 1.5%, and mainly constrained by pronounced omphacite CPO. Growth and deformation of retrograde amphibole in the eclogites also led to a pronounced CPO, which has a large impact on seismic anisotropies by raising them to up to 3.7% and changing the orientations of velocity maxima. Elastic anisotropies of the subducted metasediments are higher (up to 7.4%) and constrained by quartz and mica CPO in clastics and by calcite CPO in marble. V-P/V-S ratios may help to distinguish fresh eclogites from retrogressed ones, and both rock types from mantle peridotites of downgoing lithospheric slabs in seismic imaging. Our data also indicate that subducted terrigenous sediments not only are strongly anisotropic, but also have low V-P/V-S ratios. This way there may be the potential to image them by seismic tomography at depth in active subduction channels. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用飞行时间中子衍射确定了来自高山造山带发掘俯冲通道的岩石的晶体学优选取向(CPO)。这种方法可以研究大型的多矿物样品,更重要的是,可以应用全模式拟合方法来约束矿物学上复杂的岩石的CPO。研究的样品包括严重变形的新鲜和倒退的榴辉岩,以及沉积物,它们与俯冲通道中的榴辉岩交错排列。从CPO中计算出样品的抗震性能。榴辉岩样品的P波各向异性很低,平均约为1.5%,主要受明显的绿辉石CPO约束。榴辉岩中逆闪石的生长和变形也导致了明显的CPO,这将地震各向异性提高到3.7%并改变了速度最大值的方向,对地震各向异性产生了很大的影响。俯冲沉积物的弹性各向异性较高(高达7.4%),并且受碎屑中石英和云母CPO和大理石中方解石CPO的约束。 V-P / V-S比值可能有助于区分新鲜的榴辉岩和渐进的榴辉岩,以及两种岩石类型与地震成像中下行岩石圈平板的地幔橄榄岩的区别。我们的数据还表明,俯冲的陆源沉积物不仅具有强烈的各向异性,而且具有较低的V-P / V-S比。这样,可能存在通过地震层析成像在活跃俯冲通道中进行深度成像的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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