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首页> 外文期刊>Geophysical Research Letters >Extracting ocean-generated tidalmagnetic signals from Swarm data through satellite gradiometry
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Extracting ocean-generated tidalmagnetic signals from Swarm data through satellite gradiometry

机译:通过卫星梯度法从Swarm数据中提取海洋产生的潮汐磁信号

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摘要

Ocean-generated magnetic field models of the Principal Lunar, M-2, and the Larger Lunar elliptic, N-2, semidiurnal tidal constituents were estimated through a "Comprehensive Inversion" of the first 20.5 months of magnetic measurements from European Space Agency's (ESA) Swarm satellite constellation mission. While the constellation provides important north-south along-track gradiometry information, it is the unique low-spacecraft pair that allows for east-west cross-track gradiometry. This latter type is crucial in delivering an M-2 estimate of similar quality with that derived from over 10 years of CHAMP satellite data but over a shorter interval, at higher altitude, and during more magnetically disturbed conditions. Recovered N-2 contains nonoceanic signal but is highly correlated with theoretical models in regions of maximum oceanic amplitude. Thus, satellite magnetic gradiometry may eventually enable the monitoring of ocean electrodynamic properties at temporal resolutions of 1 to 2 years, which may have important implications for the inference of ocean temperature and salinity.
机译:通过欧洲航天局(ESA)进行的头20.5个月磁测量的“综合反演”,估算了M-2主月球和N-2大椭圆月球潮汐成分的海洋磁场模型。 )群集卫星星座任务。虽然该星座提供了重要的南北沿航迹梯度测量信息,但正是这对独特的低空间飞行器对允许东西向跨航径梯度测量。后一种类型对于提供M-2估计的质量至关重要,该估计与从CHAMP卫星10多年来的数据得出的质量相似,但间隔较短,海拔较高且受电磁干扰较大。回收的N-2包含非海洋信号,但与最大海洋振幅区域的理论模型高度相关。因此,卫星磁梯度测量法可能最终能够以1到2年的时间分辨率监测海洋电动力性质,这可能对推断海洋温度和盐度具有重要意义。

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