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首页> 外文期刊>Journal of applied geodesy >Geodetic monitoring of subrosion-induced subsidence processes in urban areas
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Geodetic monitoring of subrosion-induced subsidence processes in urban areas

机译:大范围监测城市中侵蚀引起的沉降过程

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摘要

The research project SIMULTAN applies an advanced combination of geophysical, geodetic, and modelling techniques to gain a better understanding of the evolution and characteristics of sinkholes. Sinkholes are inherently related to surface deformation and, thus, of increasing societal relevance, especially in dense populated urban areas. One work package of SIMULTAN investigates an integrated approach to monitor sinkhole-related mass translations and surface deformations induced by salt dissolution. Datasets from identical and adjacent points are used for a consistent combination of geodetic and geophysical techniques. Monitoring networks are established in Hamburg and Bad Frankenhausen (Thuringia). Levelling surveys indicate subsidence rates of about 4-5 mm per year in the main subsidence areas of Bad Frankenhausen with a local maximum of 10 mm per year around the leaning church tower. Here, the concept of combining geodetic and gravimetric techniques to monitor and characterise geological processes on and below the Earth's surface is exemplary discussed for the focus area Bad Frankenhausen. For the different methods (levelling, GNSS, relative/absolute gravimetry) stable network results at identical points are obtained by the first campaigns, i.e., the results are generally in agreement.
机译:SIMULTAN研究项目运用了地球物理,大地测量和建模技术的先进组合,以更好地了解下沉孔的演变和特征。污水坑与表面变形有着内在的联系,因此与社会的相关性不断增加,尤其是在人口稠密的城市地区。 SIMULTAN的一个工作包研究了一种集成方法,用于监视与井孔有关的质量平移和盐溶解引起的表面变形。来自相同和相邻点的数据集用于大地测量和地球物理技术的一致组合。在汉堡和巴特弗兰肯豪森(图林根)建立了监测网络。找平调查显示,巴特弗兰肯豪森(Bad Frankenhausen)的主要沉降区域的沉降速率约为每年4-5毫米,倾斜的教堂塔楼周围的局部最大值约为每年10毫米。在此,重点讨论了Bad Frankenhausen重点地区,讨论了结合大地测量技术和重力技术来监视和表征地球表面以下的地质过程的概念。对于不同的方法(调平,GNS​​S,相对/绝对重量分析法),第一个战役在相同点获得了稳定的网络结果,即结果通常是一致的。

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