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Sentinel-1 InSAR Assessment of Present-Day Land Subsidence Due to Exploitation of Groundwater Resources in Central Mexico

机译:由于墨西哥中部地下水资源开采导致当今土地沉降的Sentinel-1 Insar评估

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Long stacks of Copernicus Sentinel-1 IW SAR images acquired in 2014-2019 are processed with the Small Baseline Subset (SBAS) and Permanent Scatterers (PS) Interferometric SAR (InSAR) methods to retrieve present-day land deformation rates across major cities in central Mexico. InSAR-derived subsidence velocity reflects intense groundwater pumping from shallow and deep aquifers for public, agricultural and industrial use, and consequent water level drop and aquifer depletion. In the capital Mexico City, as well as in the valleys of Toluca and Tulancingo, which all belong to aquifers recognized by the National Water Commission as in deficit in 2018, vertical deformation rates are as high as 40, 8 and 6 cm/year, respectively. Most pronounced rates occur mainly on highly compressible, Quaternary clay and silt-rich deposits. Rates of 6.5 cm/year are also observed at well-defined subsiding zones in Puebla, in response to groundwater abstraction for public-urban and industrial use.
机译:2014 - 2019年获取的Copernicus Sentinel-1 IW SAR图像的长叠在小基线子集(SBA)和永久散射仪(PS)干涉SAR(INSAR)方法中加工,以检索中央主要城市的当前土地变形率墨西哥。 Insar衍生的沉降速度反映了来自浅层和深层含水层的强烈​​地下水,用于公共,农业和工业用途,并因此的水位下降和含水水平耗尽。在首都墨西哥城,以及托卢卡的山谷和杜拉凯托,所有这些都属于国家水务委员会在2018年赤字认可的含水层,垂直变形率高达40,8和6厘米/年,分别。最明显的速率主要发生在高度可压缩,四元粘土和富含淤泥的沉积物上。在Puebla的明确定义区域,也观察到6.5厘米/年的费率,以应对地下水抽取对公共城市和工业用途的地下水抽象。

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