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Ocean calibration approach for data from the GRACE Follow-On mission

机译:海洋校准方法,用于GRACE后续任务的数据

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The Gravity Recovery and Climate Experiment (GRACE) mission has been providing valuable new information on time variations in the Earth's gravity field since 2002. In addition, the GRACE Follow-On mission is scheduled to be flown soon after the end of life of the GRACE mission in order to minimize the loss of valuable data on the Earth's gravity field changes. In view of the major benefits to hydrology and oceanography, as well as to other fields, it is desirable to investigate the fundamental limits to monitoring the time variations in the Earth's gravity field during GRACE-type missions. A simplified model is presented in this paper for making estimates of the effect of differential spurious accelerations of the satellites during times when four successive revolutions cross the Pacific Ocean. The analysis approach discussed is to make use of changes in the satellite separation observed during passages across low-latitude regions of the Pacific and of other oceans to correct for spurious accelerations of the satellites. The low-latitude regions of the Pacific and of other oceans are the extended regions where the a priori uncertainties in the time variations of the geopotential heights due to mass distribution changes are known best. In addition, advantage can be taken of the repeated crossings of the South Pole and the North Pole, since the uncertainties in changes in the geopotential heights at the poles during the time required for four orbit revolutions are likely to be small.
机译:自2002年以来,重力恢复和气候实验(GRACE)任务一直在提供有关地球重力场时间变化的有价值的新信息。此外,GRACE后续任务计划在GRACE寿命结束后不久执行为了最大程度地减少地球重力场变化中有价值数据的丢失而进行的任务。鉴于水文学和海洋学以及其他领域的主要益处,希望研究在GRACE型任务期间监测地球重力场中时间变化的基本限制。本文提出了一种简化的模型,用于估算连续四圈绕过太平洋时卫星的差分杂散加速度的影响。讨论的分析方法是利用在穿越太平洋和其他海洋的低纬度地区时所观察到的卫星间隔变化来校正卫星的杂散加速度。太平洋和其他海洋的低纬度区域是扩展区域,其中因质量分布变化而引起的地势高度时间变化的先验不确定性最为人所知。另外,可以利用南极和北极的反复穿越,因为在四次轨道旋转所需的时间内极点处的地势高度变化的不确定性可能很小。

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