利用合成孔径雷达干涉测量法和地理建模法调查默兹-莱茵河跨境地区的地球表面形变

R. Schlögel, Karolina Owczarz, Anne Orban, H. Havenith
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引用次数: 0

摘要

导言:本研究旨在通过各种合成孔径雷达干涉测量(InSAR)处理方法的监测,区分局部和区域地面隆起,以及由地下水位下降引起的次区域沉降。埃菲尔地下的浮力地幔羽流可能是造成区域地面隆起的原因,包括威悉河-格尔河地区(BE)和南林堡地区(NL),这可能会对未来拟建爱因斯坦望远镜的区域产生负面影响:方法:比较了不同的 InSAR 处理技术,以评估其在哥白尼哨兵-1 图像时间序列上跟踪断层结构的局限性,同时根据其相位特征探测和测量地面运动。结果表明,尤里吉奥-默兹-莱茵地区(尤其是比利时与荷兰交界处)的地形总体稳定,而莱茵海盆德国一侧则出现了构造活动:由于对目标地区当前的新构造活动不甚了解,我们对与岩溶发育的西北-东南走向正断层以及瓦里斯坎东北-西南走向推断断层相关的地面变形进行了时空分析。这项工作表明,利用卫星遥感(和相关地震学)技术识别形变危险具有挑战性,这主要是由于(非常)小的区域尺度形变、地形条件和合成孔径雷达特性造成的:因此,大部分结果表明该地区地面稳定;但也观测到一些农业活动,以及铁路等基础设施沿线的变形。位于 Geul 山谷(BE)附近的断层处测得的毫米级位移可能与过去的采矿活动有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating Earth surface deformation with SAR interferometry and geomodeling in the transborder Meuse–Rhine region
Introduction: This study aims to differentiate local and regional ground uplift, as well as sub-regional subsidence induced by groundwater level drawdown, which are possibly enhanced across fault structures, as monitored by various synthetic aperture radar interferometry (InSAR) processing methods. A buoyant mantle plume under the Eifel may be responsible for the regional ground uplift, including the Weser–Geul (BE) and South Limburg regions (NL), which could negatively affect the area proposed for the future Einstein Telescope.Methods: Different InSAR processing techniques are compared to evaluate their limits in tracking fault structures on a time series of Copernicus Sentinel-1 images while detecting and measuring ground motion based on their phase signature. The results present an overall stable ground for the Euregio Meuse–Rhine region, especially at the Belgian–Dutch border, while tectonic activity is observed along the German side of the Rhine Graben.Results: As the current neotectonic activity in the target area was not well known, we performed a spatiotemporal analysis of ground deformation associated with the presence of NW–SE-trending normal faults where karst also develops, as well as along the Variscan NE–SW-trending thrust faults. This work demonstrates that the identification of deformation hazards using satellite remote sensing (and connected seismological) techniques is challenging mainly due to (very) small regional scale deformation, terrain conditions, and SAR properties.Discussion: Thus, the results mostly indicate ground stability over the area; however, also some agricultural activities were observed, as was deformation along some infrastructure such as railways. Displacements of millimetric order measured along the faults located near the Geul valley (BE) are probably related to old mining activities.
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