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The analysis of land subsidence in Tianjin basing on interferometric synthetic aperture radar (InSAR) technique

机译:基于干涉合成孔径雷达技术的天津市地面沉降分析

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Tianjin is one of the cities in the north of China where the land subsidence has most seriously developed. The land subsidence has been lasting for 50 years. In the paper, we use permanent scatterers interferometric synthetic aperture radar (PS-InSAR) technique to detect and measure ground movement in this area. The time serial measured results demonstrate that land subsidence in the study area, is controlled by geological tectonics, especially in south deformation areas. The detail information of deformation shows that the tendency and spatial extent of subsidence is controlled by geologic structures. Comparing the subsidence extracted by PS-InSAR technique to the leveling survey, both of them are mostly consistent. Meanwhile, it is revealled that different aquifers make different contributions to land subsidence. At last, we should take measures including set limit to groundwater exploitation, save water, and replenish groundwater artificially, also some new techniques (eg, InSAR) in measuring ground deformation are used to prevent and slow the land subsidence.
机译:天津是中国北方土地沉降最严重的城市之一。地面沉降已经持续了50年。在本文中,我们使用永久散射体干涉式合成孔径雷达(PS-InSAR)技术来检测和测量该区域的地面运动。时间序列的测量结果表明,研究区的地面沉降受地质构造的控制,特别是在南部变形区。变形的详细信息表明,沉降的趋势和空间范围受地质构造的控制。将PS-InSAR技术提取的沉陷与水准测量结果进行比较,两者基本一致。同时,揭示了不同的含水层对地面沉降的贡献也不同。最后,我们应采取措施,包括限制地下水开采,节水和人为补充地下水,还采用了一些新技术(例如InSAR)来测量地面变形,以防止和减缓地面沉降。

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