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首页> 外文期刊>Geomatics,Natural Hazards & Risk >Ground deformation and fissure activity in Datong basin, China 2007–2010 revealed by multi-track InSAR
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Ground deformation and fissure activity in Datong basin, China 2007–2010 revealed by multi-track InSAR

机译:大同盆地的地面变形和裂缝活动,2007 - 2010年透露多轨Insar

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abstarct The Datong basin is one of the complex geologic environments in China. Several faults are distributed in the basin, and a number of hidden faults have been discovered within the basin. Ground fissures (GFs) and land subsidence occur in this region. In the past, ground subsidence at Datong basin has been studied using groundwater level records, intermittent small-scale levelling measurements and field investigations. However, due to the low spatial resolution and temporal sampling of these records, detailed ground deformation within the basin remains poorly understood. In this study, we exploited Envisat ASAR and ALOS PALSAR images to map the ground deformation between 2007 and 2010. Most of the deformation within the basin occurred at rates of 20?mm/year. In addition to the subsidence due to coal mining in the western mountainous areas, at least four large subsidence zones could be detected. Our analysis indicates that the ground subsidence is affected by groundwater extraction and the distribution of faults. Additionally, the vertical deformation is much larger than the deformation in the east–west direction. Obvious deformation gradients occurred on individual GFs and the activity of the GFs varied spatially. Finally, Interferometric synthetic aperture radar (InSAR) observations related to groundwater exploitation and GFs were modelled and discussed.
机译:大同盆地的ABSTARCT是中国复杂的地质环境之一。在盆地中分布了几个故障,并且在盆地内发现了许多隐藏的故障。在该地区发生地面裂缝(GFS)和土地沉降。过去,大同盆地的地面沉降已经研究了地下水位记录,间歇性小规模调平测量和现场调查。然而,由于这些记录的空间分辨率和时间采样的低空间分辨率和时间采样,盆内的详细地变形仍然不知识。在这项研究中,我们利用了Envisat Asar和Alos Palsar图像来映射2007年和2010年的地面变形。大部分盆内的变形在<20?mm /年的速率下发生。除了在西部山区煤矿煤矿煤矿沉降之外,还可以检测到至少四个大沉降区。我们的分析表明,地下沉降受地下水提取的影响和断层的分布。另外,垂直变形远大于东西方向的变形。在单个GFS上发生明显的变形梯度,并且GFS的活性在空间上变化。最后,建模和讨论了与地下水开采和GFS相关的干涉性合成孔径雷达(INSAR)观察结果。

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