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20 years of active deformation on volcano caldera: Joint analysis of inSAR and AInSAR techniques

机译:火山破火山口20年活跃变形:inSAR和AInSAR技术的联合分析

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InSAR (interferometric synthetic aperture radar) techniques are applied to investigate last two decades of surface deformation of the Cerro Blanco/Robledo Caldera (CBRC). The objective is the identification of deforming patterns that alter the shape of these complex structures when they show low or null activity. The joint analysis between results by using different methods over a long time span, represents a unique opportunity to improve knowledge of volcanic structures located in remote area and, for this, poorly or not monitored. In this work we identify displacement patterns over the volcanic area, by using both classical differential InSAR analysis, and A-InSAR (advanced InSAR) analysis based on SAR data acquired by ERS-1/2 and ENVISAT sensors during the 1996-2010 time interval. The satellite-derived information allows us to characterize the deformation pattern that affected the CBRC and shows that the actively deforming CBRC is subsiding in the observed period. In order to figure out the deformation history of CBRC, we analyzed the four sub-periods 1992-1996, 1996-2000, and 2005-2010 by using standard differential InSAR technique, and the interval 2003-2007 by adopting an A-InSAR technique. Subsidence velocities of the CBRC caldera are about 2.6 cm/yr in the time interval 1992-1996 (measured with ERS descending data), 1.8 cm/yr in 1996-2000 (ERS descending data), 1.2 cm/yr in 2003-2007 (ENVISAT descending data), and finally, 0.87 cm/yr in 2005-2010 (ENVISAT ascending data). Moreover, outside the caldera and in particular in the NW area, we observe the presence of positive velocity values. Results show that: (a) a decreasing subsidence rate might be related to the reduction of volcanic activity in correspondence of the CBRC; (b) positive velocity signal, decreasing with time, might be interpreted as follows:-evidence of volcano structure lateral spreading, according to the velocity pattern distribution in this area and to the relative local flanks topographic convexity of the volcano structure;-uplift signal of this sector of mountain chain;-combination of the two mechanisms above.
机译:InSAR(干涉式合成孔径雷达)技术被用于研究Cerro Blanco / Robledo Caldera(CBRC)最近二十年的表面变形。目的是识别变形模式,这些变形模式在这些复杂结构显示低活动或无效活动时会改变它们的形状。在很长一段时间内使用不同方法进行结果之间的联合分析,代表了一次难得的机会,可以提高对偏远地区的火山构造的认识,因此,对火山岩的了解不佳或没有受到监测。在这项工作中,我们通过使用经典差分InSAR分析和基于ERS-1 / 2和ENVISAT传感器在1996-2010年时间间隔内获得的SAR数据的A-InSAR(高级InSAR)分析,确定了火山区的位移模式。来自卫星的信息使我们能够表征影响银监会的变形模式,并表明在观测期间内正在积极变形的银监会正在沉陷。为了弄清银监会的变形历史,我们使用标准差分InSAR技术分析了1992-1996年,1996-2000年和2005-2010年的四个子时期,并采用A-InSAR技术分析了2003-2007年的区间。在1992-1996年之间(根据ERS下降数据测量),CBRC破火山口的沉降速度约为2.6 cm / yr,在1996-2000年(ERS下降数据)测量为1.8 cm / yr,在2003-2007年期间为1.2 cm / yr( ENVISAT下降数据),最后是2005-2010年的0.87厘米/年(ENVISAT上升数据)。此外,在破火山口之外,特别是在西北地区,我们观察到存在正速度值。结果表明:(a)沉降速率下降可能与银监会对应的火山活动减少有关; (b)随时间递减的正速度信号可能解释如下:-火山结构横向扩展的证据,根据该区域的速度模式分布以及火山结构的相对局部侧面地形凸度;-隆升信号链的这一部分;结合以上两种机制。

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