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Modeling Land Subsidence Using InSAR and Airborne Electromagnetic Data

机译:使用INSAR和AIRBORE电磁数据建模土地沉降

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摘要

Land subsidence as a result of groundwater overpumping in the San Joaquin Valley, California, is associated with the loss of groundwater storage and aquifer contamination. Although the physical processes governing land subsidence are well understood, building predictive models of subsidence is challenging because so much subsurface information is required to do so accurately. For the first time, we integrate airborne electromagnetic data, representing the subsurface, with subsidence data, mapped by interferometric synthetic aperture radar (InSAR), to model deformation. By combining both data sets, we are able to solve for hydrologic and geophysical properties of the subsurface to effectively model the complex spatiotemporal process of deformation. The resulting model reveals that roughly 3 m of subsidence has occurred at one location of our study area from 1990 to 2018. This model also allows us to predict subsidence more accurately under future hydrologic scenarios, which is needed to develop plans for sustainable groundwater use.
机译:由于地下水在加利福尼亚州圣Joaquin Valley的地下水沉积出来的地面押金与地下水储存和含水层污染的损失有关。虽然管理土地沉降的物理流程得到了解,但建立沉降的预测模型是具有挑战性的,因为需要如此准确地进行如此多的地下信息。我们首次集成了机载电磁数据,代表了地下,沉降数据,通过干涉合成孔径雷达(INSAR)映射到模型变形。通过组合两个数据集,我们能够解决地下的水文和地球物理性质,以有效地模拟复杂的变形过程。结果模型显示,从1990年至2018年我们的研究领域的一个地点发生了大约3米的沉降。该模型还允许我们在未来的水文场景下更准确地预测下沉,这是开发可持续地下水的计划。

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  • 来源
    《Water resources research》 |2019年第4期|2801-2819|共19页
  • 作者

    Smith R.; Knight R.;

  • 作者单位

    Missouri Univ Sci & Technol Dept Geosci & Geol & Petr Engn Rolla MO 65409 USA;

    Stanford Univ Dept Geophys Stanford CA 94305 USA;

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  • 正文语种 eng
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