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MONITORING TIANJIN LAND SUBSIDENCE BY SBAS-INSAR BASED ON SENTINEL-1A SAR IMAGES

机译:基于Sentinel-1A SAR图像监测天津地地沉降

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In order to understand the spatial-temporal evolution of land subsidence in Tianjin, in this study, we applied the Small Baseline Subset Interferometric Synthetic Aperture Radar (SBAS-InSAR) technique to process 36 Sentinel-1A images acquired between 2015 and 2018 released by European Space Agency (ESA). The results show that during the study period, most of the regional land subsidence rate in study area ranged from −18 to 9 mm/a from 2015 to 2018, and the maximum subsidence rate exceeded 75 mm/a, the largest subsidence center is located in Wang qingtuo Town, Xiqing District, Tianjin. Furthermore, the SBAS-InSAR-derived result was verified by levelling data. The alignment was relatively high, and the maximum and minimum deviation were 6.4 mm and 3.3 mm, respectively, demonstrating that the SBAS-InSAR technique is feasible to monitor land subsidence in Tianjin area. The main influencing factors with respect to subsidence show different depending on different region. Additionally, the severe land subsidence in Tianjin is mainly caused by rapid urban development and urban surface load increase.
机译:为了了解天津土地沉降的空间演变,在这项研究中,我们应用了小基线子集干涉机合成孔径雷达(SBAS-Insar)技术来处理欧洲2015年和2018年间的2015年和2018之间获取的图像36图像空间局(ESA)。结果表明,在研究期间,研究面积的大多数区域土地沉降率从2015年到2018年的18至9毫米/ A,最大沉降率超过75毫米/ A,最大的沉降中心位于天津西庆区王庆托镇。此外,通过调平数据验证SBAS-Insar导出结果。对准相对较高,并且分别最大和最小偏差分别为6.4mm和3.3mm,表明SBAS-Insar技术可以监测天津地区的土地沉降。根据不同地区的沉降次数的主要影响因素不同。此外,天津的严重土地沉降主要是由城市发展迅速和城市面部负荷增加引起的。

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