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首页> 外文期刊>The Science of the Total Environment >A-Differential Synthetic Aperture Radar Interferometry analysis of a Deep Seated Gravitational Slope Deformation occurring at Bisaccia (Italy)
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A-Differential Synthetic Aperture Radar Interferometry analysis of a Deep Seated Gravitational Slope Deformation occurring at Bisaccia (Italy)

机译:Bisaccia(意大利)发生的深层重力坡变形的A微分合成孔径雷达干涉测量分析

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This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation (DSGSD), previously only hypothesized by some authors, affecting Bisaccia, a small town located in Campania region, Italy. The study was conducted through the integration of conventional methods (geological-geomorphological field survey, air-photo interpretation) and an Advanced-Differential Interferometry Synthetic Aperture Radar (A-DInSAR) technique. The DSGSD involves a brittle lithotype (conglomerates of the Ariano Irpino Supersynthem) resting over a Structurally Complex Formation (Varycoloured Clays of Calaggio Formation). At Bisaccia, probably as a consequence of post-cyclic recompression phenomena triggered by reiterated seismic actions, the rigid plate made up of conglomeratic sediments resulted to be split in five portions, showing different rates of displacements, whose deformations are in the order of some centimeter/year, thus inducing severe damage to the urban settlement. A-DInSAR techniques confirmed to be a reliable tool in monitoring slow-moving landslides. In this case 96 ENVI-ronmental SATellite-Advanced Synthetic Aperture Radar (ENVISAT-ASAR) images, in ascending and descending orbits, have been processed using SUBSOFT software, developed by the Remote Sensing Laboratory (RSLab) group from the Universitat Politecnica de Catalunya (UPC). The DInSAR results, coupled with field survey, supported the analysis of the instability mechanism and confirmed the historical record of the movements already available for the town.
机译:本文介绍了深重力重力斜坡变形(DSGSD)的调查结果,该地震先前仅由一些作者假设,影响了位于意大利坎帕尼亚地区的小镇比萨恰(Bisaccia)。该研究是通过整合常规方法(地质-地貌学现场调查,空中照片解释)和先进差分干涉合成孔径雷达(A-DInSAR)技术而进行的。 DSGSD包含一个脆性岩性(Ariano Irpino超合成岩团),位于一个结构复杂的地层(Calaggio地层的彩色粘土)上。在比萨卡西亚,可能是由于反复地震作用引起的周期后再压缩现象的结果,由砾岩沉积物组成的刚性板被分为五个部分,显示出不同的位移速率,其变形量约为几厘米。 /年,因此对城市居民区造成严重破坏。 A-DInSAR技术被证实是监测缓慢移动的滑坡的可靠工具。在这种情况下,已经使用由加泰罗尼亚理工大学(Universitat Politecnica de Catalunya)的遥感实验室(RSLab)小组开发的SUBSOFT软件处理了上升和下降轨道中的96枚卫星高级卫星合成孔径雷达(ENVISAT-ASAR)图像。 UPC)。 DInSAR的结果与现场调查相结合,支持了对不稳定机制的分析,并确认了该镇已经存在的运动的历史记录。

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