首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Ground deformation due to tectonic, hydrothermal, gravity, hydrogeological, and anthropic processes in the Campania Region (Southern Italy) from Permanent Scatterers Synthetic Aperture Radar Interferometry
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Ground deformation due to tectonic, hydrothermal, gravity, hydrogeological, and anthropic processes in the Campania Region (Southern Italy) from Permanent Scatterers Synthetic Aperture Radar Interferometry

机译:永久散射体合成孔径雷达干涉法在坎帕尼亚地区(意大利南部)的构造,热液,重力,水文地质和人类活动过程引起的地面变形

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摘要

We apply the Permanent Scatterers Synthetic Aperture Radar Interferometry (PS-InSAR) technique to the Campania Region (Southern Italy), which includes the Southern Apennines chain and Plio-Quaternary structural depressions, with the aim to detect ground displacements at a regional scale. The study area, which extends for 13,600 km(2), is characterized by intense urbanization, active volcanoes (Phlegraean Fields, Vesuvius and Ischia), seismogenic structures, landslides, hydrogeological instability. PS-InSAR technique allows us to identify a set of radar benchmarks (PS) where accurate displacement measurements can be carried out. About 1.7.10(6) PS are identified by processing Synthetic Aperture Radar (SAR) images acquired in ascending and descending orbits from 1992 to 2001 by the European Remote Sensing satellites (ERS). The PS-InSAR application at regional scale detected ground deformations ranging from +28 to -39 mm/yr. The calculated velocity values are consistent with the available GPS and levelling data from selected areas. We identify volcanic areas in which the deformation is mainly related to the depressurization of the local hydrothermal systems, and recognize deformations along seismogenic and aseismic NNW-SSE and NW-SE faults. The deformations localized along the Southern Apennines chain are mainly related to landslides while those occurring in the plains are due to subsidence processes induced by intensive drainage from wells, i.e. anthropic activity. The review of 9 years of SAR data shows that tectonic, volcanic/hydrothermal, gravity, and anthropic processes are responsible for the ground deformation of Campania. The proposed joint interpretation of deformation fields related to natural and anthopogenic factors provides a comprehensive view of the dynamics of the Earth's surface.
机译:我们将永久散射体合成孔径雷达干涉测量(PS-InSAR)技术应用于Campania地区(意大利南部),该技术包括南亚平宁山脉链和Plio-第四纪构造凹陷,旨在检测区域规模的地面位移。研究区域的长度为13,600 km(2),其特点是强烈的城市化,活火山(白云岩田,维苏威火山和伊斯基亚火山),发震构造,滑坡,水文地质不稳定。 PS-InSAR技术使我们能够确定一组雷达基准(PS),可以在其中进行精确的位移测量。通过处理1992年至2001年由欧洲遥感卫星(ERS)在上升和下降轨道中获取的合成孔径雷达(SAR)图像,可以识别出大约1.7.10(6)PS。区域规模的PS-InSAR应用检测到的地面变形范围为+28至-39 mm / yr。计算出的速度值与选定区域中可用的GPS和水准测量数据一致。我们确定火山岩中的变形主要与局部热液系统的降压有关,并识别沿地震发震和非地震NNW-SSE和NW-SE断层的变形。沿南亚平宁山脉链发生的形变主要与滑坡有关,而在平原发生的形变则是由于井密集排水引致的沉降过程,即人类活动。对9年SAR数据的回顾表明,构造,火山/热液,重力和人类活动是造成坎帕尼亚地面变形的原因。与自然和人为因素相关的变形场的拟议联合解释提供了地球表面动力学的全面视图。

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