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Detection of land subsidence in the area of intensive oil production by ALOS PALSAR data

机译:利用ALOS PALSAR数据检测集约化石油生产地区的地面沉降

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Differential synthetic aperture radar interferometry (D-InSAR) technique is powerful tool to detect the earth's surface topography and its deformations as land subsidence. In this research, we use Advanced Land Observing Satellite (ALOS) Phased Array L-band SAR (PALSAR) data to investigate land subsidence in Karamay-a typical mining city in Xinjiang Uyghur Autonomous Region of China during 2007 and 2009. The two-pass D-InSAR technique with Digital Elevation Model (DEM) was used to measure the location and amplitude of ground deformation, it is found that two northeastern sites in the city exhibit clear indications of land subsidence, the maximum subsidence depth is estimated to be 35.66 cm in the study time period. Despite the interferometric technique provides valuable data that complement traditional geomorphological studies, some limitations are still exist, due to the spatial and temporal decorrelation between the interferometric pair in the interferogram. Hence, further observations are necessary for evaluate the accuracy of the experimental results obtained in this study. Monitoring of these sites should continue with differential Global positioning system (GPS) measurements and other auxiliary data sets to investigate the performance of ALOS PALSAR for ground subsidence monitoring.
机译:差分合成孔径雷达干涉法(D-InSAR)技术是检测地面沉降和地面沉降的强大工具。在这项研究中,我们使用高级陆地观测卫星(ALOS)相控阵L波段SAR(PALSAR)数据调查了克拉玛依市(中国新疆维吾尔自治区的一个典型采矿城市)在2007年和2009年的地面沉降。两次通过使用带有数字高程模型(DEM)的D-InSAR技术测量地面变形的位置和幅度,发现该城市的东北两个站点明显显示出地面沉降的迹象,最大沉降深度估计为35.66 cm在研究时间段内。尽管干涉测量技术提供了补充传统地貌学研究的有价值的数据,但是由于干涉图中干涉对之间的时空去相关,仍然存在一些局限性。因此,进一步的观察对于评估在这项研究中获得的实验结果的准确性是必要的。对这些站点的监视应继续使用差分全球定位系统(GPS)测量和其他辅助数据集,以调查ALOS PALSAR在地面沉降监视中的性能。

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