Geohazards InSAR Laboratory and Modeling Group (InSARlab), Geoscience Research Department, Geological Survey of Spain (IGME), Alenza 1, 28003 Madrid, Spain.
Spanish Working Group on Ground Subsidence (SUBTER), UNESCO, 03690 Alicante, Spain.
Sensors (Basel). 2020 May 12;20(10):2749. doi: 10.3390/s20102749.
The launch of the medium resolution Synthetic Aperture Radar (SAR) Sentinel-1 constellation in 2014 has allowed public and private organizations to introduce SAR interferometry (InSAR) products as a valuable option in their monitoring systems. The massive stacks of displacement data resulting from the processing of large C-B and radar images can be used to highlight temporal and spatial deformation anomalies, and their detailed analysis and postprocessing to generate operative products for final users. In this work, the wide-area mapping capability of Sentinel-1 was used in synergy with the COSMO-SkyMed high resolution SAR data to characterize ground subsidence affecting the urban fabric of the city of Pistoia (Tuscany Region, central Italy). Line of sight velocities were decomposed on vertical and E-W components, observing slight horizontal movements towards the center of the subsidence area. Vertical displacements and damage field surveys allowed for the calculation of the probability of damage depending on the displacement velocity by means of fragility curves. Finally, these data were translated to damage probability and potential loss maps. These products are useful for urban planning and geohazard management, focusing on the identification of the most hazardous areas on which to concentrate efforts and resources.
2014 年发射的中分辨率合成孔径雷达(SAR)哨兵-1 星座,使公共和私营组织能够将合成孔径雷达干涉测量(InSAR)产品作为其监测系统中的一个有价值的选择。从处理大型 C-B 和雷达图像中产生的大量位移数据堆栈,可以用于突出时间和空间变形异常,并对其进行详细分析和后处理,以生成最终用户的可操作产品。在这项工作中,Sentinel-1 的广域测绘能力与 COSMO-SkyMed 高分辨率 SAR 数据协同使用,以描述影响意大利托斯卡纳地区皮斯托亚市(意大利中部)城市结构的地面沉降。视线速度被分解为垂直和 E-W 分量,观察到沉降区域中心附近的轻微水平运动。垂直位移和损坏现场调查允许根据位移速度通过易碎性曲线计算损坏的概率。最后,将这些数据转换为损坏概率和潜在损失图。这些产品可用于城市规划和地质灾害管理,侧重于确定最危险的区域,以便集中精力和资源。