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COMPARISON OF THE GLOBAL ANALYTICAL MODELS OF THE MAIN GEOMAGNETIC FIELD WITH THE STRATOSPHERIC BALLOON MAGNETIC DATA

机译:基层气球磁性数据的主要地磁场全局分析模型的比较

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Three global analytical models of a main geomagnetic field constructed by satellite data are used: model IGRF, Daily Mean Spherical Harmonic Models (DMSHM), and model EMM/2010, and also scalar data of geomagnetic field and its gradients, received in stratospheric balloon gradient magnetic surveys at altitudes of ~30 km. At these altitudes the regional magnetic field is formed from all sources of the Earth's crust. It enables to receive along lengthy routes of surveys the fullest data on regional and longwave-lenght magnetic anomalies. Model DMSHM is used at extracting of magnetic anomalies for elimination of a secular variation up to significant value 0,2 nT. The model can be constructed within the limits of ± 1 months from the moment stratospheric balloon surveys with beneficial day terms with magnetic activity up to Kp <20, that leads to an error of representation of main MFE equal ±5 нТл. It is possible at presence acting for the period of stratospheric balloon magnetic survey of the satellite, for example, Swarm. On stratospheric balloon data it is shown, that model EMM/2010 unsatisfactorily displays MFE at altitude of 30 km. Hence, the qualitative model of the constant (main and anomaly) magnetic field cannot be constructed only with use of satellite and ground data. The improved model constant MFE, constructed according to satellite and stratospheric balloon magnetic surveys, developed up to a degree and the order m=n=720, will have a reliable data about regional crust magnetic field, hence, and about deep magnetic structure of the Earth's crust. The use gradient magnetic surveys aboard stratospheric balloons allows to find the places alternating approximately through 3000 km in which there are no magnetic anomalies. In these places probably to supervise satellite magnetic models for a range of altitude of 20-40 km, timed to stratospheric balloon magnetic surveys.
机译:由卫星数据构成的主磁场的三个全球分析模型被使用:模型IGRF,每日平均球面谐波模型(DMSHM),和模型EMM / 2010,也地磁场的标量数据和它的梯度,在平流层气球梯度接收在约30 km时磁力测量。在这个高度区域的磁场是由地壳的各种来源形成。它使沿区域和长波lenght磁异常的调查充分进行长时间的数据路由可以收到。模型DMSHM在用于消除一个长期变化起来磁异常的提取到显著值0,2 NT使用。该模型可以在±1个月,从此刻平流层气球调查具有有益天术语与磁活性最多的Kp <20的范围内被构造,这导致主MFE的表示的误差等于±5нТл。有可能在作用为卫星的平流层气球磁测的周期存在,例如,群。对平流层气球的数据被示出,但模型EMM / 2010不能令人满意的显示MFE在30公里高度。因此,常数(主要和异常)磁场的定性模型不能仅利用卫星和地面数据构成。改进的模型恒定MFE,根据卫星和平流层气球磁力测量,发展到一定程度,并顺序米构造= N = 720,将有大约区域地壳磁场的可靠的数据,因此,与约的深磁结构地球的地壳。采用梯度磁选调查船上平流层气球可以在其中找到没有磁异常的地方通过3000公里交替约。在这些地方可能监督卫星磁模型的一系列20-40公里的高空,定时到平流层气球磁力测量。

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