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Intra-plate deformation in west-central Europe

机译:中西欧板块内变形

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The central part of Europe north of the alpine orogenic belt is generally seen as a relatively stable area of the western tip of the Eurasian plate. Indeed, up to now, no geodetically significant motions have been detected although an active rift system running roughly in SSE-NNW direction along the Rhine valley could have some effect on the stability of this region. Presently, the increasing accuracy of geodetic point motions should allow the study of small motions at levels down to nearly 0.1 mm/yr. We start our investigation with a closer look at the 'true' accuracy and significance of GPS derived point velocities of permanent stations. We compare and discuss the different levels of formal errors obtained by the three analysis centers considered in this study (EPN, JPL and SOPAC) and present additional ways of assessing the accuracy using the redundancy offered by different independent analyses and multiple systems operating at one site. On the average, all results indicate that a one-sigma level of ±0.3 mm/yr can be seen as a conservative estimate for the horizontal accuracy of point motions in central Europe. On the basis of this assumption we find that at present, the actual velocity field as determined by different analysis groups and centers does not show any significant east-west extensional deformation. We do however see a prominent north-south compressional velocity gradient of about 1 mm/yr/1000km (1 nanostrain/yr) which could be associated with the Alpine thrust in conjunction with a south-directed horizontal component of the Fennoscandian Glacial Isostatic Adjustment.
机译:欧洲中部在造山带以北的地区通常被视为欧亚板块西端的一个相对稳定的区域。确实,到目前为止,尽管沿莱茵河谷大致沿SSE-NNW方向运行的主动裂谷系统可能对该区域的稳定性有一定影响,但尚未检测到大地运动。目前,大地测点运动精度的提高将允许研究低至近0.1毫米/年水平的小运动。我们从仔细研究永久站点GPS衍生点速度的“真实”准确性和重要性开始研究。我们比较并讨论了本研究中考虑的三个分析中心(EPN,JPL和SOPAC)获得的形式错误的不同级别,并提出了使用不同独立分析和在一个站点运行的多个系统提供的冗余性来评估准确性的其他方法。平均而言,所有结果均表明,±0.3 mm / yr的单西格玛水平可以看作是中欧点运动水平精度的保守估计。基于此假设,我们发现目前,由不同分析组和中心确定的实际速度场没有显示任何明显的东西向伸展变形。但是,我们确实看到了一个明显的南北向压缩速度梯度,大约为1 mm / yr / 1000 km(1纳米应变/ yr),这可能与阿尔卑斯山的推力以及Fennoscandian冰川等静压调整的南向水平分量有关。

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