The nature of magnetic anomalies in the southern part of the Barents Sea shelf according to the results of an integrated analysis

A. Baluev, Y. V. Brusilovsky, A. Ivanenko
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Abstract

Research subject. The anomalous magnetic field of the southern part of the Barents Sea Shelf.Materials and methods. The research was based on a digital matrix (grid) of the anomalous magnetic field (AMP) compiled from the materials of magnetic surveys performed in 2002–2007 by a number of research organizations and research and production companies. A model describing the structure and formation of the magneto-active layer of the southern part of the Barentsevomorsk region was developed. An analysis of the radially averaged field spectrum made it possible to establish the confinement of the upper edges of the field sources to several structural horizons. Band filtering in the frequency domain in accordance with the allocated depth ranges allowed anomalies to be distinguished from other sources. To determine the nature of sources of magnetic anomalies at different levels of the earth’s crust, an integrated analysis of gravimagnetic fields, seismic profiling data and ground studies was conducted.Results. At least two levels of magnetic anomaly sources were found: the distribution of effective magnetization for the low-frequency component of AMP, reflecting the depth structure of the region, and the high-frequency component of AMP, reflecting the distribution of local intrusions in the upper part of the foundation and in the sedimentary cover. The lower level is represented by massive blocks of deep laying and corresponds to the SDR (Seaward Dipping Reflectors) complex, which is an alternation of tectonic plates of continental material with ultrabasite basites that were introduced into the crust at the post-rift stage of the continent’s split. The zone of positive linear anomalies of the magnetic field reflects the divergent boundary of the ancient continental plate of the Baltic, which arose during the fragmentation of the supercontinent of Colombia (Paleopangea) in the middle reef and the formation of the Rifean oceanic basin, which was then veiled by subsequent tectonic processes. The upper structural level indicates the introduction of the main composition into the upper layers of the earth’s crust in the zones of rift-forming faults of magma in late Devonian times during the process of continental rifting on the Svalbard Plate. This is confirmed by the presence of manifestations of the main magmatism within the propagation zone of the South Barents riftogenic depression into the body of the Baltic Shield.Conclusions. The conducted integrated analysis of the anomalous magnetic field and other geological and geophysical data allowed the authors to establish the nature of the sources of magnetic anomalies located at different structural levels of the earth’s crust in the southwestern part of the Barents Sea shelf. The magnetoactive layer of this region is characterized by a complex structure, the section of which includes at least two structural levels, each reflecting certain evolutionary stages of the earth’s crust.
综合分析巴伦支海陆架南部磁异常的性质
研究课题。巴伦支海陆架南部的异常磁场。材料和方法。这项研究是基于一个异常磁场(AMP)的数字矩阵(网格),该矩阵是由许多研究机构和研究生产公司在2002-2007年进行的磁调查资料汇编而成的。建立了描述巴伦泽莫尔斯克地区南部磁活动层结构和形成的模型。通过对径向平均场谱的分析,可以确定场源的上边缘对几个结构层的限制。根据分配的深度范围在频域进行带滤波,可以将异常与其他来源区分开来。为了确定地壳不同层次磁异常源的性质,对重力磁场、地震剖面资料和地面研究进行了综合分析。至少发现了两个层面的磁异常源:反映该地区深部结构的AMP低频分量有效磁化强度分布,以及反映基础上部和沉积盖层局部侵入体分布的AMP高频分量有效磁化强度分布。较低的一层由大量的深部块体代表,对应于SDR(向海倾斜反射)杂岩,这是一个由大陆物质组成的构造板块与在大陆分裂后的裂谷阶段引入地壳的超基岩基交替形成的。磁场正线性异常带反映了波罗的海古大陆板块的发散边界,该边界是在中礁的哥伦比亚超大陆(古泛古陆)分裂和里菲亚海洋盆地形成期间形成的,随后被构造作用所掩盖。上部构造水平表明,在斯瓦尔巴板块大陆裂陷过程中,晚泥盆世岩浆裂谷断裂带将主要成分引入地壳上层。在南巴伦支裂陷向波罗的海地盾体的扩张带内,主要岩浆活动的表现证实了这一点。通过对异常磁场和其他地质和地球物理数据的综合分析,作者确定了位于巴伦支海大陆架西南部地壳不同构造水平的磁异常源的性质。本区磁活动层结构复杂,其剖面至少包括两个构造层,每一个都反映了地壳的某些演化阶段。
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