Lithospheric magnetic structure of cratonic regions in Central-Eastern China inferred from aeromagnetic anomalies: Insights into magnetization in the uppermost mantle

IF 2.4 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Yuanyuan Li , Yushan Yang , Jiwen Teng , Tianyou Liu , Yafen Yan
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Abstract

Most of the subcontinental lithospheric mantle (SCLM) beneath Proterozoic cratons consists of refertilized Archaean SCLM. Variations in SCLM composition and its physical properties significantly affect the stabilization and preservation of the ancient continents. In this paper, aeromagnetic data are analyzed to reveal the magnetic structure of the lithospheric mantle beneath two major Precambrian blocks in central-eastern China, i.e., the Upper Yangtze Block (UYB) and Ordos Block (OB). After being reduced to the pole, the Fourier power spectrum of the aeromagnetic anomalies is calculated to determine the depth to magnetic sources. Considering the lower spatial resolution of the power spectral analysis in dealing with the long-wavelength aeromagnetic anomalies, we applied the scale-normalized continuous wavelet transform (CWT) on the magnetic data to trace the magnetic sources, with special focus on deeper ones. Synthetical model of a magnetic layer and application to the profile data validate the effectiveness of this scale normalization scheme in improving the wavenumber/spatial resolution in the CWT scalogram.
In order to present a detailed magnetic structure, we carried out 2.5D forward modeling work on the magnetic data of a 2280 km-long nearly N-S profile across the UYB and OB. Due to the inherent ambiguity in the modeling results, the CWT-based spectral analysis is successfully adopted to provide source depth constraints for the initial model. The constrained forward modeling results indicate strong inhomogeneities among main tectonic blocks of studied area, like humans have different fingerprints. The magnetization of OB is larger than that of UYB since its Archean to Paleoproterozoic metamorphic basement are widely exposed at the surface, while the Precambrian basement of UYB is mostly overlain by unmetamorphosed Sinian cover and weakly metamorphosed Neoproterozoic strata. The most interesting aspect is that deep-seated magnetic sources might reside in the uppermost mantle of UYB and OB, suggesting vertical layering in the SCLM in cold cratonic regions.

Abstract Image

从航空磁异常推断中国中东部板块构造区域的岩石圈磁结构:对最上层地幔磁化的启示
新生代陨石坑下的大部分次大陆岩石圈地幔(SCLM)由再肥的太古宙SCLM组成。SCLM成分及其物理性质的变化对古陆的稳定和保存有重要影响。本文分析了航空磁数据,揭示了中国中东部两大前寒武纪地块(即上扬子地块和鄂尔多斯地块)下岩石圈地幔的磁结构。在还原到极点后,计算航空磁异常的傅立叶功率谱,以确定磁源深度。考虑到功率谱分析在处理长波长气磁异常时空间分辨率较低,我们对磁数据进行了尺度归一化连续小波变换(CWT),以追踪磁源,特别是较深的磁源。磁层的合成模型和对剖面数据的应用验证了这种尺度归一化方案在提高 CWT 扫描图的波数/空间分辨率方面的有效性。为了呈现详细的磁结构,我们对横跨 UYB 和 OB 的 2280 公里长的近 N-S 剖面磁数据进行了 2.5D 正演建模工作。由于建模结果存在固有的模糊性,我们成功地采用了基于 CWT 的光谱分析来为初始模型提供源深度约束。受约束的前向建模结果表明,研究区域的主要构造块体之间存在强烈的不均匀性,就像人类有不同的指纹一样。由于奥陶系至古近系变质基底广泛出露于地表,奥陶系的磁化率大于古近系,而古近系的前寒武纪基底大多被未变质的新元古代盖层和弱变质的新近系地层所覆盖。最有趣的是,深层磁源可能存在于大亚湾核电站和大洋洲转播台的最上层地幔中,这表明冷板块地区的SCLM存在垂直分层。
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来源期刊
Physics of the Earth and Planetary Interiors
Physics of the Earth and Planetary Interiors 地学天文-地球化学与地球物理
CiteScore
5.00
自引率
4.30%
发文量
78
审稿时长
18.5 weeks
期刊介绍: Launched in 1968 to fill the need for an international journal in the field of planetary physics, geodesy and geophysics, Physics of the Earth and Planetary Interiors has now grown to become important reading matter for all geophysicists. It is the only journal to be entirely devoted to the physical and chemical processes of planetary interiors. Original research papers, review articles, short communications and book reviews are all published on a regular basis; and from time to time special issues of the journal are devoted to the publication of the proceedings of symposia and congresses which the editors feel will be of particular interest to the reader.
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