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Inverse modelling using PS-InSAR data for improved land subsidence simulation in Las Vegas Valley, Nevada

机译:使用PS-InSAR数据进行反演以改善内华达州拉斯维加斯山谷的地面沉降模拟

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摘要

Las Vegas Valley has had a long history of groundwater development and subsequent surface deformation. InSAR interferograms have revealed detailed and complex spatial patterns of subsidence in the Las Vegas Valley area that do not coincide with major pumping regions. This research represents the first effort to use high spatial and temporal resolution subsidence observations from InSAR and hydraulic head data to inversely calibrate transmissivities (T), elastic and inelastic skeletal storage coefficients (Ske and Skv) of the developed-zone aquifer and conductance (CR) of the basin-fill faults for the entire Las Vegas basin. The results indicate that the subsidence observations from InSAR are extremely beneficial for accurately quantifying hydraulic parameters, and the model calibration results are far more accurate than when using only groundwater levels as observations, and just a limited number of subsidence observations. The discrepancy between distributions of pumping and greatest levels of subsidence is found to be attributed to spatial variations in clay thickness. The Eglington fault separates thicker interbeds to the northwest from thinner interbeds to the southeast and the fault may act as a groundwater-flow barrier and/or subsidence boundary, although the influence of the groundwater barrier to this area is found to be insignificant. Copyright © 2016 John Wiley & Sons, Ltd.
机译:拉斯维加斯谷(Las Vegas Valley)拥有悠久的地下水开发和随后的地表变形历史。 InSAR干涉图揭示了拉斯维加斯谷地区沉陷的详细而复杂的空间格局,与主要的抽水区域不符。这项研究代表了使用InSAR和水力压头数据的高时空沉降沉降观测值进行的第一项努力,以反标定发达地区含水层的电导率(T),弹性和非弹性骨架储能系数(Ske和Skv)和电导率(CR)。 )整个拉斯维加斯盆地的盆地填充断层。结果表明,InSAR的沉降观测结果对于准确定量水力参数极为有利,并且模型校准结果比仅使用地下水位作为观测结果以及仅使用有限数量的沉降观测结果更为准确。发现抽水分布和最大沉降量之间的差异是由于粘土厚度的空间变化引起的。 Eglington断层将较厚的夹层分隔为西北,将较薄的夹层分隔为东南,并且该断层可作为地下水流屏障和/或沉降边界,尽管地下水屏障对该区域的影响微不足道。版权所有©2016 John Wiley&Sons,Ltd.

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