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Deformation Monitoring and Analysis of the Geological Environment of Pudong International Airport with Persistent Scatterer SAR Interferometry

机译:持续散射SAR干涉法在浦东国际机场地质环境变形监测与分析中的应用

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Many coastal cities have undertaken reclamation projects to satisfy the land demands of rapid urbanization. However, the foundations of reclaimed land are susceptible to settlement and can have undesirable environmental impacts that could adversely affect these dense, populated areas. In the case of international airports built on reclaimed areas especially, regional-scale deformation must be monitored to ensure operational security for public safety. Persistent Scatterer SAR Interferometry (PSI) technology has proven to be an effective tool to detect ground deformation in urban areas. However, it is still a challenge to apply PSI to effectively monitor settlement at airports built on newly developed coastal reclamation areas because of the scarcity of identifiable targets. Moreover, additional issues arise as the complicated deformation patterns associated with the underlying geological conditions make it difficult to interpret InSAR-derived results. In this study, a time-series analysis of a high-resolution TerraSAR-X satellite image stack acquired from September 2011 to October 2012 was performed by employing a modified PSI technique to retrieve the mean deformation velocity and time series of surface deformation at Pudong International Airport. Qualitative evaluation of spatial distribution and temporal evolution of deformation was conducted by joint analyses of deformation measurements and local geological data. Detailed analysis of various driving forces for deformation patterns confirmed that the results of deformation monitoring obtained by PSI are reliable and consistent with that of local geological surveys. Since the factors responsible for the subsidence within the airport are still at play, ongoing and routine deformation monitoring is warranted.
机译:许多沿海城市已经进行了填海工程,以满足快速城市化的土地需求。但是,开垦土地的地基易于沉降,并且可能会对环境造成不利影响,从而对这些人口稠密的地区产生不利影响。对于特别是在填海区上建造的国际机场而言,必须对区域规模的变形进行监控,以确保公共安全的运营安全。持久散射SAR干涉技术(PSI)技术已被证明是检测城市地区地面变形的有效工具。但是,由于缺乏可识别的目标,因此应用PSI来有效地监视在新建沿海开垦区上建造的机场的沉降仍然是一个挑战。此外,还会出现其他问题,因为与潜在地质条件相关的复杂变形模式使得难以解释InSAR得出的结果。在这项研究中,采用改进的PSI技术对2011年9月至2012年10月采集的高分辨率TerraSAR-X卫星图像堆栈进行了时间序列分析,以获取浦东国际机场的平均变形速度和表面变形的时间序列。飞机场。通过对变形量度和局部地质数据进行联合分析,对变形的空间分布和时间演化进行了定性评估。对变形模式的各种驱动力的详细分析证实,PSI获得的变形监测结果是可靠的,并且与当地地质调查的结果一致。由于造成机场内部沉陷的因素仍在起作用,因此需要进行连续的例行变形监测。

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