地壳的地球物理研究(俄罗斯北部地区和北极大陆架)

M. Chadaev, V. Kostitsyn, V. Gershanok, G. Prostolupov, M. Tarantin
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摘要

研究课题。本文介绍了对两个地区的地壳进行地质和地球物理研究的结果:东欧地台的西北部和邻近水域,以及东西伯利亚、楚科奇海和北冰洋的俄罗斯东部水域,包括罗蒙诺索夫海脊和门捷列夫-阿尔法隆起。研究的重点是绘制莫霍图,这是证实大陆架外边界所必需的地壳厚度和类型。材料和方法。本文采用了作者在VECTOR系统中处理重磁数据时获得的原始资料。根据重力异常与岩石密度变化的关系,对研究对象的形状、大小及其深部相互位置进行了表征。利用VECTOR方法得到的构造方案和地壳深部构造剖面,在欧洲Moho全球地震模型上进行了验证。莫霍剖面的正形式和陆架表面凸起部分对应于转换后的重力场的正异常。Pevek-Anadyr地区大陆异常场的构造向研究区域的海洋部分扩展,可以间接确认罗蒙诺索夫山脉、门捷列夫山脊和阿尔法山脊属于大陆型地壳。全球的,即与地球的领土有关,莫霍的三维模型使我们能够扩展和深化关于大陆架结构特征的知识量。相对于剖面地震研究方案的表示,矢量系统的位势场更系统、更全面地显示了研究环境的构造特征。
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Geophysical study of the Earthʼs crust (Northern regions of Russia and the Arctic sea shelf)
Research subject. The results of the geological and geophysical study of the Earth’s crust on the territory of two regions are presented: the northwestern part of the East European Platform and the adjacent water area, as well as the waters of the East Siberian, Chukchi Seas and the Russian eastern sector of the Arctic Ocean, including the Lomonosov ridge and the Mendeleev–Alpha rise. The research is focused on mapping the Moho, the thickness and type of the Earth's crust necessary to substantiate the outer boundary of the continental shelf.Materials and methods. The authors’ original materials obtained during the processing of gravimetry and magnetometry data in the VECTOR system were used. Based on the relationship between gravity anomalies and density variations of rocks, the shape, size of the studied objects, and their deep mutual position are characterized.Results. The constructed schemes and profiles of the deep structure of the Earth's crust, obtained using the VECTOR method, were tested using the European Moho global seismic model. The positive forms of the Moho section and the raised parts of the shelf surface correspond to the positive anomalies of the transformed gravitational field. The spread of the structure of the field of continental anomalies in the Pevek–Anadyr area to the marine part of the territory under consideration can indirectly confirm the belonging of the Lomonosov Cr., the Mendeleev and Alpha ridges to the continental type of crust.Conclusion. Global, i.e., related to the territory of the globe, three-dimensional models of Moho allow us to expand and deepen the amount of knowledge about the features of the shelf structure. Geopotential fields in the VECTOR system display the tectonics of the studied environment systematically and comprehensively compared to is representation according to the scheme of profile seismic studies.
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