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Surface Subsidence Monitoring in Eastern Liaoning Province using Sentinel-1B SAR Interferometry from 2017 to 2019

机译:2017年至2019年使用Sentinel-1B SAR干涉仪对辽宁东部地表沉降进行监测

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Some cities in eastern Liaoning province have suffered from surface subsidence due to excessive pumping of groundwater for the past few years. The Time series differential interferometry (TSInSAR) provides an efficient surface subsidence survey and monitoring method for land subsidence in large areas. In this paper, 25 Sentinel-1B TOPS mode images from 2017 to 2019 were adopted to map ground subsidence in major cities such as Shenyang, Anshan and Liaoyang in eastern Liaoning province by TSInSAR technology. Meanwhile we retrieve the deformation information in the surrounding iron mining areas of Anshan. Results show that most regions of Shenyang, Anshan and Liaoyang are stable and the deformation rate is less than 1cm/year. The main subsiding areas are located in Shoushan area and Taian country (Anshan), Dongling district (Shenyang). The maximum deformation rate in Taian country (Anshan) and iron mining areas is up to 14.49cm/year. Finally, we analyzed the influencing factors of surface subsidence in more detail, such as groundwater exploitation, urban construction and land use, and iron mining. InSAR results can provide a scientific basis for urban planning and land subsidence monitoring in eastern Liaoning province.
机译:在过去的几年里,辽宁省东部的一些城市由于地下水抽取过多而遭受地表沉陷。时间序列微分干涉法(TSInSAR)为大面积土地沉降提供了一种有效的地面沉降调查和监测方法。本文采用TSInSAR技术,采用2017年至2019年的25个Sentinel-1B TOPS模式图像对辽宁省东部沉阳,鞍山和辽阳等主要城市的地面沉降进行了制图。同时,我们检索了鞍山周边铁矿区的变形信息。结果表明,沉阳,鞍山和辽阳大部分地区稳定,变形率小于1cm /年。主要的沉降区域位于寿山地区和泰安县(鞍山),东陵区(沉阳)。泰安(鞍山)和铁矿区的最大变形率高达14.49cm /年。最后,我们更详细地分析了地面沉降的影响因素,例如地下水开采,城市建设和土地利用以及铁矿开采。 InSAR结果可为辽东省的城市规划和地面沉降监测提供科学依据。

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