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首页> 外文期刊>Pure and Applied Geophysics >Curie Point Depths in North China Craton Based on Spectral Analysis of Magnetic Anomalies
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Curie Point Depths in North China Craton Based on Spectral Analysis of Magnetic Anomalies

机译:基于磁异常光谱分析的华北克拉通居里点深度

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摘要

Magnetic anomaly analysis is an important method to study the structure of deep crust. With the assumption of random magnetization sources, the structure of a magnetic layer can be inverted via spectral analysis. Curie point depth (CPD), the depth at which rocks lose their ferromagnetic properties, is the bottom of a magnetic layer. In this study, we estimate from the magnetic anomaly data of EMAG2 dataset the CPD and the top of the magnetic layer in North China. With a moving window of 180 km x 180 km, we calculate the average top and centroid depth of the magnetic layer in each window and determine the regional CPD distribution across North China. The CPD of North China varies from 18 to 32 km. In addition, the CPD in the western part of the North China Craton is deeper than that in the eastern part. The shallowest CPD is located near the Bohai Sea. When compared to available heat flow data, the estimated CPD values are consistent with thermal conductivity of 1.8-3.2 Wm(-1) K-1 and on heat production value of 0.4-1.3 A mu Wm(-3).
机译:磁异常分析是研究深地壳结构的重要方法。假设磁化源是随机的,磁层的结构可以通过光谱分析来反转。居里点深度 (CPD) 是岩石失去铁磁特性的深度,是磁层的底部。本研究利用EMAG2数据集的磁异常数据,估算了华北地区CPD和磁层顶部。在180 km x 180 km的移动窗口下,我们计算了每个窗口中磁层的平均顶部和质心深度,并确定了整个华北地区的CPD分布。华北地区的CPD从18到32公里不等。此外,华北克拉通西部的CPD比东部更深。最浅的CPD位于渤海附近。与现有热流数据相比,估计的CPD值与1.8-3.2 Wm(-1)K-1的热导率和0.4-1.3 A μ Wm(-3)的产热值一致。

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