首页> 外文期刊>Journal of South American earth sciences >Crustal-scale electrical conductivity anomaly beneath inflating Lazufre volcanic complex, Central Andes
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Crustal-scale electrical conductivity anomaly beneath inflating Lazufre volcanic complex, Central Andes

机译:安第斯山脉中部膨胀的Lazufre火山群下方的地壳尺度电导率异常

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摘要

Large-scale surface deformation was observed at Lazufre volcanic center in the Central Andes of Northern Chile/Northwestern Argentina by means of Interferometric Synthetic Aperture Radar (InSAR). Uplift started there after 1998 and increased dramatically in the following years up to a rate of 3 cm/a. Lazufre is now one of the largest deforming volcano systems on Earth, but the cause for uplift - likely influx of magmatic material into the crust - is still poorly understood. In the beginning of 2010 a magnetotelluric survey was conducted to delineate the electrical conductivity distribution in the area. Several long-period magnetotelluric (LMT) sites and two broadband magnetotelluric (BBMT) sites were set up on an EW trending profile crossing the volcanic center; furthermore some LMT sites were arranged circularly around Lazufre complex and adjacent Lastarria volcano. Data were processed using an algorithm for robust and remote reference transfer function estimation. Electrical strike directions were estimated and induction arrows were derived. Although electrical strike is rather ambiguous, in a first step a 2-D resistivity model was calculated. The most prominent feature of this model is a well conducting structure rising from the upper mantle to the shallow crust beneath the center of elevation. This can be interpreted as partial melts ascending from the asthenospheric wedge and feeding a potential magma reservoir beneath Lazufre volcanic center. An improved model is finally achieved by 3-D inversion, supporting this feature. We assume that these rising melts are the source of the observed uplift at Lazufre complex.
机译:利用干涉合成孔径雷达(InSAR)在智利北部/阿根廷西北部安第斯中部的拉祖弗尔火山中心观测到大规模的表面变形。隆起始于1998年以后,随后几年急剧上升,达到3 cm / a。拉祖夫(Lazufre)现在是地球上最大的变形火山系统之一,但对隆升的原因(可能是岩浆物质涌入地壳)的了解仍然很少。在2010年初,进行了大地电磁测量,以描绘该地区的电导率分布。在横穿火山中心的EW趋势剖面上建立了几个长期大地电磁(LMT)站点和两个宽带大地电磁(BBMT)站点;此外,一些LMT站点在Lazufre建筑群和邻近的Lastarria火山周围呈圆形排列。使用用于鲁棒和远程参考传递函数估计的算法处理数据。估计了电击方向,并导出了感应箭头。尽管电击相当模糊,但第一步是计算二维电阻率模型。该模型最突出的特点是一个传导良好的结构,从上地幔上升到高程中心以下的浅层地壳。这可以解释为部分熔融物从软流圈楔形上升,并向Lazufre火山中心下方的潜在岩浆储层供入。最终通过3-D反演实现了改进的模型,从而支持该功能。我们假设这些上升的熔体是Lazufre情结中观测到的隆升的来源。

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