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Etn@ref: a geodetic reference frame for Mt. Etna GPS networks

机译:Etn @ ref:山的大地测量参考系。 Etna GPS网络

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In volcanology, geodetic data are one of the most important instruments for the scientific community interested in modeling physical processes related to magma movements in the shallow crust. Since the end of the 1980s, GPS surveys and continuous GPS stations have greatly improved the possibility of measuring such movements with high time and space resolution. However, physical modeling requires that any external influence on the data that is not directly related to the investigated quantity must be filtered. One major tricky factor in determining a deformation field using GPS displacement vectors and velocities is the correct choice of a stable reference frame. In this study, we defined a local reference frame using more than a decade of GPS measurements, to refer the Mt. Etna ground deformation pattern to a rigid block. In particular, we used a weighted least-squares inversion to estimate the Euler pole for the rigid block by minimizing the adjustments to two horizontal components of GPS velocity at 13 ?fiducial? sites located within a 350-km radius of Mt. Etna. The inversion inferred a Euler pole located at 38.450? N and ?107.702? E, and a rotation rate of 0.263 deg/Myr.
机译:在火山学中,大地测量数据是科学界对模拟与浅地壳岩浆运动有关的物理过程感兴趣的最重要工具之一。自1980年代末以来,GPS勘测和连续GPS站大大提高了以高时空分辨率测量此类运动的可能性。但是,物理建模要求必须过滤掉与数据不直接相关的任何外部影响。使用GPS位移矢量和速度确定变形场的一个主要棘手因素是正确选择稳定的参考系。在这项研究中,我们使用十多年的GPS测量来定义本地参考系,以参考Mt。 Etna地面变形模式为刚性块。特别是,我们使用加权最小二乘反演,通过最小化对13°基准点GPS速度的两个水平分量的调整,来估计刚性块的Euler极点。位于山350公里半径内的站点。埃特纳火山。反演推断出位于38.450的欧拉极点。 N和“ 107.702”? E,旋转速度为0.263度/米尔。

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