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The first pan-Alpine surface-gravity database, a modern compilation that crosses frontiers

机译:第一个泛alpine表面 - 重力数据库,穿过边界的现代汇编

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The AlpArray Gravity Research Group (AAGRG), as part of the European AlpArray program, focuses on the compilation of a homogeneous surface-based gravity data set across the Alpine area. In 2017 10 European countries in the Alpine realm agreed to contribute with gravity data for a new compilation of the Alpine gravity field in an area spanning from 2 to 23°?E and from 41 to 51°?N. This compilation relies on existing national gravity databases and, for the Ligurian and the Adriatic seas, on shipborne data of the Service Hydrographique et Océanographique de la Marine and of the Bureau Gravimétrique International. Furthermore, for the Ivrea zone in the Western Alps, recently acquired data were added to the database. This first pan-Alpine gravity data map is homogeneous regarding input data sets, applied methods and all corrections, as well as reference frames.Here, the AAGRG presents the data set of the recalculated gravity fields on a 4?km?×?4?km grid for public release and a 2?km?×?2?km grid for special request. The final products also include calculated values for mass and bathymetry corrections of the measured gravity at each grid point, as well as height. This allows users to use later customized densities for their own calculations of mass corrections. Correction densities used are 2670?kg?m?3 for landmasses, 1030?kg?m?3 for water masses above the ellipsoid and ?1640?kg?m?3 for those below the ellipsoid and 1000?kg?m?3 for lake water masses. The correction radius was set to the Hayford zone O2 (167?km). The new Bouguer anomaly is station completed (CBA) and compiled according to the most modern criteria and reference frames (both positioning and gravity), including atmospheric corrections. Special emphasis was put on the gravity effect of the numerous lakes in the study area, which can have an effect of up to 5?mGal for gravity stations located at shorelines with steep slopes, e.g., for the rather deep reservoirs in the Alps. The results of an error statistic based on cross validations and/or “interpolation residuals” are provided for the entire database. As an example, the interpolation residuals of the Austrian data set range between about ?8 and +8?mGal and the cross-validation residuals between ?14 and +10?mGal; standard deviations are well below 1?mGal. The accuracy of the newly compiled gravity database is close to ±5?mGal for most areas.A first interpretation of the new map shows that the resolution of the gravity anomalies is suited for applications ranging from intra-crustal- to crustal-scale modeling to interdisciplinary studies on the regional and continental scales, as well as applications as joint inversion with other data sets. The data are published with the DOI https://doi.org/10.5880/fidgeo.2020.045 (Zahorec et al., 2021) via GFZ Data Services.
机译:作为欧洲ALPARRAY计划的一部分,ALPARRAY重力研究组(AAGRG)专注于汇编跨高山区域的均匀表面重力数据。 2017年,10个欧洲高山领域的国家同意为重力数据贡献,以便在跨越2至23°Δe和41至51°培养的区域中的山脉重力场的新汇编。这种汇编依赖于现有的国家重力数据库,并且对于利古里亚和亚得里亚海,在Servographique etOcéanographiquedeaLa海洋和博格米梅里克国际局的船载数据上。此外,对于Alps中的IVrea区,最近收购的数据被添加到数据库中。该第一泛山重力数据图是关于输入数据集,应用方法和所有校正以及参考帧的同质化。并且AAGRG在4?Km?×4上呈现重新计算的重力场的数据集?×4?公共发布的km网格和2 km?×2 km网格,特别请求。最终的产品还包括计算每个网格点处测量重力的质量和碱基测量校正的计算值,以及高度。这允许用户使用稍后的定制密度来进行自己的大规模校正的计算。使用的校正密度是2670?kg?m?3用于兰萨斯,1030?kg?m?3用于椭球上方的水质量和αkg?m≤3.对于椭圆体下方的那些,1000?kg?3湖水群众。校正半径设置为Hayford区O2(167 km)。新的Bouguer异常是车站已完成(CBA),并根据最现代标准(定位和重力)(包括大气校正)编制。特别强调研究区域众多湖泊的重力效应,它可以具有高达5·的重力站的效果,该重力站位于具有陡坡的海岸线,例如阿尔卑斯山中的相当深的储层。基于交叉验证和/或“插值残差”的错误统计结果为整个数据库提供。作为示例,奥地利数据集的插值残差在约8和+8?MGAL之间和交叉验证残差之间的αmgal;标准偏差远低于1?MGAL。最新的重力数据库的准确性接近±5?MGAL用于大多数区域。新地图的首次解释表明,重力异常的分辨率适用于从地壳内到地壳级模型的应用范围关于区域和大陆尺度的跨学科研究,以及与其他数据集的联合反演的应用。通过GFZ数据服务,使用DOI HTTPS://doi.org/10.5880/Fidgeo.2020.045(Zahorec等,2021)发布。
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