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首页> 外文期刊>Remote Sensing >Land subsidence, Ground Fissures and Buried Faults: InSAR Monitoring of Ciudad Guzmán (Jalisco, Mexico)
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Land subsidence, Ground Fissures and Buried Faults: InSAR Monitoring of Ciudad Guzmán (Jalisco, Mexico)

机译:地面沉降,地面裂缝和隐伏断层:古兹曼城的InSAR监测(墨西哥哈利斯科州)

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We study land subsidence processes and the associated ground fissuring, affecting an active graben filled by thick unconsolidated deposits by means of InSAR techniques and fieldwork. On 21 September 2012, Ciudad Guzmán (Jalisco, Mexico) was struck by ground fissures of about 1.5 km of length, causing the deformation of the roads and the propagation of fissures in adjacent buildings. The field survey showed that fissures alignment is coincident with the escarpments produced on 19 September 1985, when a strong earthquake with magnitude 8.1 struck central Mexico. In order to detect and map the spatio-temporal features of the processes that led to the 2012 ground fissures, we applied InSAR multi-temporal techniques to process ENVISAT-ASAR and RADARSAT-2 satellite SAR images acquired between 2003 and 2012. We detect up to 20 mm/year of subsidence of the northwestern part of Ciudad Guzmán. These incremental movements are consistent with the ground fissures observed in 2012. Based on interferometric results, field data and 2D numerical model, we suggest that ground deformations and fissuring are due to the presence of areal subsidence correlated with variable sediment thickness and differential compaction, partly driven by the exploitation of the aquifers and controlled by the distribution and position of buried faults.
机译:我们研究了地面沉降过程和相关的地面裂隙,这些地面裂隙通过InSAR技术和野外作业影响了由厚实的未固结沉积物填充的活动地grab。 2012年9月21日,古兹曼城(墨西哥哈利斯科州)被约1.5公里长的地面裂缝击中,导致道路变形和裂缝在邻近建筑物中传播。现场调查显示,裂缝的排列与1985年9月19日生产的悬崖相吻合,当时墨西哥中部发生了里氏8.1级的强烈地震。为了检测和映射导致2012年地面裂缝的过程的时空特征,我们应用InSAR多时相技术处理了2003年至2012年之间获取的ENVISAT-ASAR和RADARSAT-2卫星SAR图像。到古兹曼城西北部沉降的20毫米/年。这些增量运动与2012年观测到的地面裂缝是一致的。基于干涉测量结果,现场数据和二维数值模型,我们认为地面变形和裂缝是由于存在与沉降厚度变化和压实压实相关的地面沉降所致。由开采含水层驱动,并由埋藏断层的分布和位置控制。

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