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首页> 外文期刊>Journal of Aeronautics & Aerospace Engineering >Determination of the Earths Magnetic Field Gradients from Satellites Measurements and Their Inversion over the Kursk Magnetic Anomaly
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Determination of the Earths Magnetic Field Gradients from Satellites Measurements and Their Inversion over the Kursk Magnetic Anomaly

机译:通过卫星测量确定地球磁场梯度及其对库尔斯克磁异常的反演

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We computed magnetic field gradients at satellite altitude, over Europe with emphasis on the Kursk Magnetic Anomaly (KMA). They were calculated using the CHAMP satellite total magnetic anomalies. Our computations were done to determine how the magnetic field observations data from the new ESA/Swarm satellites could be utilized to determine the structure of the magnetization of the Earth’s crust, especially in the region of the KMA. Ten years of CHAMP data were used to simulate the Swarm data. An initial east magnetic anomaly gradient map of Europe was computed and subsequently the North, East and Vertical magnetic gradients for the KMA region were calculated. The vertical gradient of the KMA was also determined using Hilbert transforms. Inversion of the total KMA was derived using Simplex and Simulated Annealing algorithms. The depths of the upper and lower boundaries are calculated downward from the 324 km elevation of the satellite. Our resulting inversion depth model is a horizontal quadrangle. The maximum errors are determined by the model parameter errors.
机译:我们计算了整个欧洲卫星高度的磁场梯度,重点是库尔斯克磁异常(KMA)。它们是使用CHAMP卫星总磁异常来计算的。我们进行了计算,以确定如何利用新的ESA / Swarm卫星的磁场观测数据来确定地壳的磁化结构,尤其是在KMA地区。十年的CHAMP数据用于模拟Swarm数据。计算了欧洲的初始东磁异常梯度图,然后计算了KMA地区的北,东和垂直磁梯度。还使用希尔伯特变换确定了KMA的垂直梯度。使用单纯形法和模拟退火算法导出总KMA的反演。上限和下限的深度是从卫星324 km的高度向下计算的。我们得到的反演深度模型是水平四边形。最大误差由模型参数误差确定。

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