MODELING OF THE LITHOSPHERE IN THE WHITE SEA REGION USING DECOMPOSITION OF ANOMALOUS GRAVITATIONAL AND MAGNETIC FIELDS

B. Z. Belashev, L. I. Bakunovich, N. V. Sharov
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Abstract

The research area includes the White Sea and adjacent land located in the junction zone of the eastern part of the Fennoscandian Shield and the Russian Plate. The purpose of the study is to construct a model of the lithospheric structure of the region using decomposition of anomalous gravitational and magnetic fields and inverse problem solving for components of gravity and magnetic fields, respectively. The decompositions of the fields were provided by the singular spectral method in the software package "R 4.3.1". The inverse problems were solved using the programs of the "Integro" complex. The components of the fields help to identify and analyze buried geological structures. The rift system of the White Sea is most clearly represented by the fourth component of the gravitational and magnetic fields. The positions of density and magnetic inhomogeneities of the Earth’s crust corresponding the components of the fields have been determined. The component model is compared with the seismic density and magnetic models of the lithosphere along the 3-AР geotraverse (Kem – White Sea Throat).
利用异常重力场和磁场分解模拟白海地区岩石圈
研究区域包括位于芬诺斯坎迪亚地盾东部与俄罗斯板块交界处的白海及其邻近陆地。研究的目的是利用异常重、磁场分解和重、磁场分量逆问题分别构建该地区岩石圈结构模型。利用“r4.3.1”软件包中的奇异谱法对各场进行分解。利用“Integro”复合体的程序求解逆问题。这些场的组成有助于识别和分析埋藏的地质构造。白海裂谷系最明显的表征是引力场和磁场的第四分量。确定了地壳密度和磁不均匀性的位置与磁场分量的对应关系。将分量模型与3-AР地平线(Kem - White Sea Throat)岩石圈的地震密度和磁场模型进行了比较。
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