首页> 外文期刊>Journal of South American earth sciences >Constraining a mafic thick crust model in the Andean Precordillera of the Pampean flat slab subduction region
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Constraining a mafic thick crust model in the Andean Precordillera of the Pampean flat slab subduction region

机译:约束潘板岩平板俯冲区的安第斯山脉的铁镁铁质厚壳模型

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摘要

Elastic properties in twelve representative rock samples from Central and Western Precordillera in the Andean backarc region of Argentina between 30 and 31 degrees S were estimated from detailed petrological analysis. Thus, P and S seismic-wave velocities (Vp, Vs) as well as Poisson's ratio (a) among other parameters were derived for gabbros, leuco-gabbros and wehrlites, in greenschist and amphibolite metamorphic conditions using a framework of a wide variety of empirical observations from active continental margins. In addition, Vs lithosphere models along two west east cross sections were obtained using a joint inversion of teleseismic Rayleigh waves and receiver functions. These models clearly delineate the upper-plate crustal structure and the flat-slab subduction of the Nazca plate at about 100 km depth in this region. The suggested seismic velocity structure shows a relatively low (<3.3 km/s) Vs layer located in the first 15-18 km depth, then an increase of it from 3.3 to 4 km/s between 20 and 55 km depth with a mayor change at 40 km depth beneath the Precordillera showing an increase in Vs from 33 to 3.8 km/s. The Moho discontinuity was identified at around 65 km depth beneath the Precordillera (Vs = 4.3 km/s) and shows a low shear-wave velocity contrast in comparison with the upper continental mantle's parameters. Using this seismological model, Vs estimations derived from the petrological analyses for the 12 collected samples can be projected at depths greater than 30 km. These geophysical and petrological results agree with the hypothesis of a mafic thickened and partially eclogitized lower crust beneath the Precordillera, which has been predicted previously on a base of seismological studies only. Our petrological and seismological results collectively support a thick crustal model of a mafic-ultramafic composition extending to middle-to-lower crustal levels beneath Central and Western Precordillera; this region correlates with a suture zone between the eastern Cuyania terrane and the western Chilenia terrane. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过详细的岩石学分析,估计了阿根廷安第斯后弧地区中西部西部记录岩中的十二个代表性岩石样品的弹性特性,温度范围为30至31度。因此,在格林希斯特和角闪石变质条件下,使用多种框架,推导了辉长岩,无色辉长岩和辉绿岩的P和S地震波速度(Vp,Vs)以及泊松比(a)等参数。来自活跃大陆边缘的实证观察。另外,利用远震瑞利波和接收器函数的联合反演,获得了沿两个西东截面的Vs岩石圈模型。这些模型清楚地描绘了该地区纳斯卡板块的上板壳构造和平板俯冲。建议的地震速度结构显示在前15-18 km深度处的Vs层相对较低(<3.3 km / s),然后随着市长的变化在20至55 km深度之间将其从3.3 km / s增加到4 km / s在Precordillera下面40 km的深度处,Vs从33 km / s增加到3.8 km / s。莫霍面的不连续性被确定为在前记录器下方约65 km处(Vs = 4.3 km / s),与上地幔参数相比,剪切波速度反差较低。使用这种地震学模型,可以将岩石学分析得出的对12个采集样品的Vs估计值投影到大于30 km的深度。这些地球物理和岩石学结果与假单胞菌下方的铁镁质增厚且部分凝结的下地壳的假说相符,此前仅在地震学研究的基础上预测了这种假说。我们的岩石学和地震学研究结果共同支持了镁铁-超镁铁质成分的厚地壳模型,该模型扩展到中西部和西部前岩层以下的中低地壳水平;该区域与东库亚尼亚地层和西智利地层之间的缝合带相关。 (C)2015 Elsevier Ltd.保留所有权利。

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