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Contributions of thermoelastic deformation to seasonal variations in GPS station position

机译:热弹性变形对GPS站位置季节变化的贡献

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We investigate surface displacements due to land temperature variation with the 2014 global thermoelastic model, which is a solution on a uniformly elastic sphere under the constraint that the geocenter remains stationary. In this research, the seasonal variations of global surface displacements are numerically simulated based on 0-10 cm underground land surface temperatures from National Oceanic and Atmospheric Administration. The displacements include vertical and horizontal components for the first time. Meanwhile, the annual contributions of geophysical sources, which are mainly due to atmosphere, ocean, snow and continental water, are also estimated. For comparative analyses, the partial displacement by annual mass-loading and the total displacement by the combined annual of thermoelasticity and mass-loading are calculated, respectively, and displayed against the annual displacements at stations of global positioning system network. Results of the numerical simulation show that the amplitude of surface thermoelastic deformation is at the millimeter level on the global scale, topped at about 3 mm for radial displacement and about 1.5 mm for transverse components, which need to be considered for the high-precision terrestrial reference frame. The combined deformation caused by thermoelastic and mass-loading can explain the seasonal GPS observations better than the mass-loading alone, in particular for the transverse displacements.
机译:我们研究了由于2014年全球热弹性模型的陆地温度变化导致的表面位移,这是一个在地理狭窄静止的约束下均匀弹性球体的解决方案。在这项研究中,基于来自国家海洋和大气管理的0-10cm地下地面温度,对全局表面位移的季节变化进行了数值模拟。位移首次包括垂直和水平组件。同时,还估计了地球物理来源的年度贡献,主要是由于大气,海洋,雪和欧式水。对于比较分析,分别计算每年衡量的部分位移和通过热弹性和大规模加载的总产量的总位移,并针对全球定位系统网络站的年度流离失所。数值模拟结果表明,表面热弹性变形的幅度在全球尺度上处于毫米水平,径向位移约3mm,横向位移约1.5mm,需要考虑高精度的陆地参考范围。由热弹性和质量负荷引起的组合变形可以解释比单独的质量加载更好的季节性GPS观察,特别是对于横向位移。

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