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The Impact of Atmospheric Correction on Brazilian Earth Tide Models

机译:大气修正对巴西地球潮汐模型的影响

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摘要

Terrestrial gravity stations have been in operation for several years throughout Brazil. Minimizing geophysical effects on gravimetric observations is a major challenge in the generation of solid Earth tide models. The objective of this work was to conduct an analysis of barometric information and the impact of four barometric correction methodologies on gravimetric data for two stations located in the state of Sao Paulo: Presidente Prudente and Cananeia. The proposed approach involves three steps: (1) the processing of gravimetric data in order to obtain preliminary Earth tide models, (2) the application of four methodologies for atmospheric loading correction, and (3) the analysis of the impact on each wave constituent. The results show that the observed Earth tide models have a standard deviation (SD) of 0.001 and 0.01 degrees for gravimetric factors and phases, respectively. The impact on the application of different methodologies for minimizing the air mass overload was less than 1.5 nm/s(2) for the observation residuals. In addition, for both stations, the residuals in Earth tide constituents showed greater sensitivity to different atmospheric corrections for P-1 and S-2, which is related to the higher intensity of diurnal and semidiurnal solar constituents.
机译:巴西各地的陆地重力站已经运行了几年。最大限度地减少对重量观测的地球物理作用是生成固体地球潮汐模型中的主要挑战。这项工作的目的是对气压信息进行分析,以及四个气压校正方法对位于圣保罗州的两个站点的重量数据的影响:总统普拉迪恩和纳尼亚。所提出的方法涉及三个步骤:(1)重量数据的处理以获得初步地球潮汐模型,(2)施加四种方法用于大气负载校正,(3)对每个波组成的影响分析。结果表明,观测的地球潮汐模型分别具有0.001和0.01度的标准偏差,分别用于重量因子和阶段。对于观察残留,对空气质量过载最小化的不同方法施加不同方法的影响小于1.5nm / s(2)。此外,对于两个站,地球潮量成分的残留物对P-1和S-2的不同大气校正表现出更大的敏感性,这与较高的昼夜和半衰老太阳能成分强度有关。

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