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首页> 外文期刊>Journal of South American earth sciences >Reactivation of the Venezuelan vertical deflection data set from classical astrogeodetic observations
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Reactivation of the Venezuelan vertical deflection data set from classical astrogeodetic observations

机译:重新激活委内瑞拉垂直偏转数据集的经典天文大地观测

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摘要

Astrogeodetic vertical deflections (VDs) are gravity field functionals which are independent from any other field observation such as gravity accelerations from gravimetry or geoid undulations from GPS and geometric levelling. They may be useful for the validation of global geopotential models or height transfer via GPS and astronomical levelling. VDs are sensitive to the local mass-distribution, so can be used in geophysical studies, too. Over Southern Hemisphere continents in general and South America in particular, VDs are exceptionally rare. This paper describes the reactivation of a unique VD data set that extends over parts of the Andes Mountains in Venezuela. The VD data was acquired 1983 and 1985 with classical astrogeodetic instrumentation at 24 field stations along a ∼80 km traverse crossing the Cordillera de Mérida with observation site elevations as high as ∼4500 m. To be compatible with modern geocentric gravity field products, the geodetic coordinates of the VD sites were transformed from the historic (non-geocentric) Venezuelan reference system to the geocentric ITRF2014, with residuals smaller than ∼1 m. In the ITRF, the measured VDs have RMS signal strengths of ∼20 arc-seconds (North-South) and ∼14 arc-seconds (East-West), with magnitudes exceeding 60 arc-seconds at one benchmark. The observed VDs were compared against VDs from GRACE, GOCE and EGM2008 data and from the ultra-high resolution GGMplus gravity maps. The GGMplus model was found to capture ∼85 to 90% (in terms of root-mean-square signals) of the measured VD signals. Both VD components are in ∼2 arc-sec agreement with GGMplus. Overall, the agreement between observed VDs and modelled VDs is considered satisfactory, given the VDs were measured in a topographically rugged region, where residual signals may be large and global models are not well supported through regional terrestrial gravity data. The VDs may be useful, e.g., for the assessment of high-frequency constituents of present and future high-degree gravitational models (e.g., EGM2020) and calibration of model commission errors. The Venezuelan VD data is freely available.
机译:天地大地垂直偏转(VD)是重力场功能,它独立于任何其他野外观测,例如重力法产生的重力加速度或GPS和几何水准仪产生的大地水准波动。它们对于验证全球地理势模型或通过GPS和天文水准测量的高度转移可能很有用。 VD对局部质量分布敏感,因此也可以用于地球物理研究中。在整个南半球大陆,尤其是南美洲,VD极为罕见。本文介绍了如何重新激活唯一的VD数据集,该数据集遍及委内瑞拉安第斯山脉的部分地区。 VD数据是在1983年和1985年使用经典的大地测量仪器在24个野外观测站获得的,这些测量站沿穿越梅里达山脉的约80 km的导线横断面,观测点海拔高达约4500 m。为了与现代地心重力场产品兼容,将VD站点的大地坐标从历史(非地心)委内瑞拉参考系统转换为地心ITRF2014,其残差小于1 m。在ITRF中,测得的VD的RMS信号强度约为20弧秒(南北)和约为14弧秒(东西)(在一个基准点上超过60弧秒)。将观察到的VD与来自GRACE,GOCE和EGM2008数据以及超高分辨率GGMplus重力图的VD进行了比较。发现GGMplus模型捕获了所测量VD信号的约85%至90%(就均方根信号而言)。两个VD组件均与GGMplus达成约2弧秒的协议。总体而言,考虑到VD与建模VD之间的一致性被认为是令人满意的,因为VD是在地形崎region的区域中测量的,在该区域中残差信号可能很大并且区域地面重力数据不能很好地支持全局模型。 VD可能有用,例如用于评估当前和未来的高重力模型(例如EGM2020)的高频成分以及模型佣金误差的校准。委内瑞拉VD数据可免费获得。

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