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Estimation of Subsidence in Po Delta Area (Northern Italy) by Integration of GPS Data, High-Precision Leveling and Archival Orthometric Elevations

机译:通过整合GPS数据,高精度水准仪和档案正高标高估算波塔三角地区(意大利北部)的沉降

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Subsidence in a deformation area can be measured in various ways, examples being conventional high-precision leveling, differential InSAR and multi-temporal GPS surveys. Integration of methods can improve results, and is crucial to extract high-precision data. In particular, orthometric and ellipsoid elevations, surveyed at different moments in time, can be compared to yield information on vertical movements when geoid anomalies are known. However, a data checking procedure must be applied if archival orthometric elevations are used, because long-term measurements for many historical benchmarks may have been lost and/or replaced with other points, but at different elevations. This type of checking can be carried out over an area without gravimetric anomalies by modeling geoid undulations and vertical displacements in the time-span used for analysis, excluding points with anomalous values. This procedure was tested and applied in the Po Delta area (northern Italy), historically subject to high subsidence rates: the leveling benchmarks of 1983 were measured with the GPS technique in 2008. After checking of archival data and transformation from ellipsoid to orthometric elevations, comparisons of the same points and interpolations on the study area provided a subsidence map for the 1983-2008 period.
机译:变形区域的沉降可以通过多种方式进行测量,例如常规的高精度水准测量,差分InSAR和多时相GPS测量。方法的集成可以改善结果,并且对于提取高精度数据至关重要。特别是,当已知大地水准面异常时,可以将在不同时间点测量的正高和椭球高程进行比较,以得出有关垂直运动的信息。但是,如果使用档案正高程,则必须应用数据检查程序,因为许多历史基准的长期测量值可能已经丢失和/或被其他点所代替,但位置不同。通过对用于分析的时间段中的大地水准面波动和垂直位移建模(不包括异常值的点),可以在没有重力异常的区域上执行此类检查。该程序已在Po Delta地区(意大利北部)进行了测试,并在历史上经历了高沉降率:1983年使用GPS技术测量了1983年的水平基准。研究区域中相同点和插值的比较​​提供了1983-2008年期间的沉降图。

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