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TS-InSAR analysis for monitoring ground deformation in Lanzhou New District, the loess Plateau of China, from 2017 to 2019

机译:2017年至2019年,中国兰州新区监测地面变形的TS-Insar分析

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摘要

Large-scale land creation projects involving the cutting of mountains to infill gullies for construction have been carried out in Lanzhou New District (LZND). However, there is an urgent need for comprehensive and detailed research on the spatiotemporal evolution of ground deformation in LZND. Based on Sentinel-1A SAR data, combined with the urban geological background, the ground deformation in LZND from 2017 to 2019 was analysed. Two independent, multi-temporal techniques, persistent scatterers interferometry (PS-InSAR) and the small baseline subset (SBAS-InSAR), were used to calculate the deformation time series, and the results were cross-verified. The time series-monitoring results of the SBAS and PS calculations exhibited strong consistency in LZND and verified the high reliability of the experimental results. The results showed the whole surface of the LZND from March 2017 to October 2019 maintained stability, and the deformation rate was primarily in the range of -10 to 10 mm/year. However, ground deformation in the Xicha area was evident. The maximum annual deformation rates monitored by SBAS-InSAR and PS-InSAR were -52.48 mm/year and -56.35 mm/year, respectively. The most typical deformation areas include the built-up area and the land creation area. The surface subsidence area was concentrated in the filling area. The ground deformation range of LZND kept expanding and accelerating from 2017 to 2019. Land creation, urban construction, geology and precipitation were the primary factors contributing to local severe ground deformation. The results of this study provide reference for the regional urban planning in LZND.
机译:兰州新区(LZND)开展了涉及山区切割山脉填充沟渠的大型土地创建项目。然而,迫切需要综合和详细研究LZND中地面变形的时空演变。基于Sentinel-1A SAR数据,结合城市地质背景,分析了2017年至2019年LZND的地面变形。两个独立的多时间技术,持久性散射仪干涉测量(PS-INSAR)和小基线子集(SBAS-INSAR)用于计算变形时间序列,结果是交叉验证的。 SBAS和PS计算的时间序列监测结果表现出LZND中的强稠度,并验证了实验结果的高可靠性。结果表明,2017年3月至2019年10月的LZND全面维持稳定,变形率主要在-10至10毫米/年的范围内。然而,XICHA地区的地面变形很明显。 SBAS-Insar和PS-Insar监测的最大年度变形率分别为-52.48毫米/年,分别为-56.35毫米/年。最典型的变形区域包括内置区域和土地创建区域。表面沉降区域集中在填充区域中。 LZND的地面变形范围从2017年到2019年保持扩张和加速。土地创作,城市建,地质和降水是促成局部严重地变形的主要因素。本研究的结果为LZND的区域城市规划提供了参考。

著录项

  • 来源
    《Advances in space research》 |2021年第4期|1267-1283|共17页
  • 作者单位

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

    Faculty of Geomatics Lanzhou Jiaotong University Lanzhou China National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring Lanzhou China Gansu Provincial Engineering Laboratory for National Geographic State Monitoring Lanzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sentinel-1A image; Land creation; Road network; Field investigation; Loess;

    机译:Sentinel-1a图像;土地创造;公路网;实地调查;黄土;
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