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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Two scales of inflation at Lastarria-Cordon del Azufre volcanic complex, central Andes, revealed from ASAR-ENVISAT interferometric data
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Two scales of inflation at Lastarria-Cordon del Azufre volcanic complex, central Andes, revealed from ASAR-ENVISAT interferometric data

机译:从ASAR-ENVISAT干涉测量数据揭示了安第斯山脉中部Lastarria-Cordon del Azufre火山群的两种通货膨胀率

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摘要

ASAR-ENVISAT Interferometric Synthetic Aperture Radar (InSAR) data collected over the Lastarria-Cordon del Azufre complex (Chile-Argentina) between March 2003 and May 2005 show the persistence of the large wavelength ground inflation revealed by Pritchard and Simons in 2002 from the analysis of ERS InSAR data [Nature 418 (2002) 167-170]. After reducing the tropospheric contribution in the interferograms using a combination of data network adjustment and analysis of MODIS images, we produced an accurate interferometric time series showing a 2 yr long temporal evolution of the ground displacements patterns. Two distinct inflating signals are detected. The main signal covers an elliptical area with a 45 km NNE-SSW major axis and a 37 km minor axis. It is correlated with a regional topographic dome. We estimated its maximum inflation rate to similar to 2.5 cm yr(-1). We inverted the InSAR data for a range of source geometries (spherical, prolate ellipsoids, penny-shaped cracks). The inferred source parameters for 2003-2005 period are consistent with an over-pressured reservoir at shallow to intermediate crustal depths (7-15 km), with an average volumetric rate of inflation of about 14 x 10(6) m(3) yr(-1). In addition to this main signal a new feature highlighted by the ASAR data is short wavelength inflation (6 km wide) at the location of Lastarria volcano on the northern margin of the large wavelength signal. We explain this short wavelength signal by a spherical over-pressured source lying 1000 m below the summit of Lastarria volcano. We estimate the average volumetric rate of inflation during the observation period to be similar to 35 x 10(3) m(3) yr(-1). It is remarkable that both volumetric variations for the large and small inflations exhibit the same evolution during the 2003-2005 period, suggesting that both processes could be related. On the basis of the inversion results and of arguments provided by field evidences and a morpho-structural analysis of the Digital Elevation Model of the area, we propose that the deep source have a magmatic origin while the shallow source is most likely related to hydrothermal fluids. In our interpretation, the on-going deformation processes observed at Lastarria-Cordon del Azufre volcanic complex could represent an evolving pre-caldera silicic system. Further field geological and geophysical investigations will be required to confirm these hypotheses and refine the proposed model, mostly based on satellite observations. (c) 2007 Elsevier B.V. All rights reserved.
机译:2003年3月至2005年5月在Lastarria-Cordon del Azufre联合体(智利-阿根廷)收集的ASAR-ENVISAT干涉合成孔径雷达(InSAR)数据显示,普里查德和西蒙斯在2002年通过分析发现了大波长地​​面通货膨胀的持久性ERS InSAR数据[Nature 418(2002)167-170]。在使用数据网络调整和MODIS图像分析相结合来减少干涉图中对流层的贡献之后,我们产生了一个精确的干涉时间序列,显示了地面位移模式历时2年的时间演变。检测到两个不同的充气信号。主信号覆盖具有45 km NNE-SSW长轴和37 km短轴的椭圆区域。它与区域地形圆顶相关。我们估计其最大通货膨胀率接近2.5 cm yr(-1)。我们对一系列源几何形状(球形,长椭圆形,便士形裂纹)的InSAR数据进行了反演。推断的2003-2005年期间的烃源参数与浅至中地壳深度(7-15 km)的超压储层一致,平均体积膨胀率约为14 x 10(6)m(3)年(-1)。除此主要信号外,ASAR数据还强调了一项新功能,即在大波长信号北边缘的拉斯塔里亚火山位置处,短波长膨胀(宽6公里)。我们通过位于Lastarria火山山顶下方1000 m处的球形超压源解释了这种短波信号。我们估计观察期间的平均通货膨胀率类似于35 x 10(3)m(3)yr(-1)。值得注意的是,在2003年至2005年期间,大通胀和小通胀的体积变化都表现出相同的演变,这表明这两个过程可能是相关的。根据反演结果和现场证据提供的论证,以及对该地区数字高程模型的形态结构分析,我们认为深层源岩浆成因,而浅层源极可能与热液有关。 。在我们的解释中,在拉斯塔里亚-科尔登·德尔阿祖夫火山复合体观察到的持续变形过程可能代表了一个不断演化的火山口硅质系统。将需要进一步的野外地质和地球物理研究,以证实这些假设并完善所提出的模型,这主要是基于卫星观测。 (c)2007 Elsevier B.V.保留所有权利。

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