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On the Observability of the Time-Variable Lithospheric Signal in Satellite Magnetic Data

机译:关于卫星磁数据中时变岩体信号的可观察性

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The lithospheric magnetic field, which is one of the main objectives of ESA's mission Swarm, is slowly varying in time due to an induced component. This variation is small (usually it is omitted in the lithospheric modelling) but recent advances in processing strategies and still-growing amount of satellite data open questions whether such an effect should be considered in the development of the lithospheric models-when using data from missions like CHAMP and Swarm. This effect can now be estimated over a period of 17 years (since the launch of CHAMP), and it is shown how the satellite measurements (over the observable part of the spectrum) can be referenced to one common epoch. For this purpose, we first inverted the magnetic field vector from CHAOS-6 over degrees 21-120, after subtraction of a remanent model, to a vertically integrated susceptibility map. Using this susceptibility distribution and taking into account the evolving core fields from the CHAOS-6 model, the time-varying lithospheric signal is computed. The results depend on the time span and the altitude considered, e.g., an altitude of 400 km and a span of 17 years can produce more than 0.5 nT variations resulting in a peak-to-peak value of nearly 1 nT. The vertically integrated quantities appear to be a useful choice for parameterising lithospheric time variations, also for providing data corrections at the satellite altitude. The effect of the choice of the core field, which enters the inversion, on the lithospheric time variation is also studied-this effect is found less important even for core fields 20 years apart.
机译:由于诱导的组分,是ESA任务群的主要目标之一的岩石树形磁场是慢慢变化。这种变化很小(通常在岩石中建模中省略它),但加工策略和仍然延长的卫星数据量的近期进步是在岩石树模型的开发中应考虑这种效果 - 从任务中使用数据时应考虑这种效果像冠军和群。现在可以估计这一效果在17年(自Champ启动以来),并显示了如何参考一个常见的时期卫星测量(在光谱的可观察部分)。为此目的,我们首先将磁场向量从倒置的模型减法到垂直集成的易感性图之后将磁场向量从CHAOS-6倒在21-120中倒置。使用这种敏感性分布并考虑到来自混沌-6模型的不断发展的核心字段,计算了时变的岩石层信号。结果取决于时间跨度和所考虑的高度,例如,高度为400公里,17岁的跨度可以产生超过0.5nt的变化,导致近1 nt的峰值值。垂直集成量似乎是用于参数化的岩石术时间变化的有用选择,也用于在卫星高度提供数据校正。还研究了进入反演的核心场的效果,也研究了岩石术时间变化 - 即使对于20年的核心领域,这种效果也不太重要。

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