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Progress and challenges in modeling global lithospheric magnetic anomalies

Authors :
Yao Luo
Jingmin Li
Jinxin Zheng
Xue Yang
Hang Yin
Wenzhi Zhang
Qingkui Meng
Bing Li
Linfei Wang
Source :
地球与行星物理论评, Vol 55, Iss 6, Pp 681-692 (2024)
Publication Year :
2024
Publisher :
Editorial Office of Reviews of Geophysics and Planetary Physics, 2024.

Abstract

Over the past 50 years, extensive airborne and oceanic magnetic survey data collection efforts have resulted in the almost complete coverage of near-surface magnetic survey data worldwide. National and intercontinental magnetic anomaly maps have also been generated. Advancements in satellite magnetic field measurements, such as those from CHAllenging Minisatellite Payload (CHAMP), provided longwave magnetic anomaly backgrounds on a global scale. This has led to the realization of global magnetic anomaly grids with arcminute resolutions, such as the World Digital Magnetic Anomaly Map (WDMAM). Utilizing these datasets, spherical harmonic coefficient models such as the NGDC-720 model have been established for lithospheric magnetic fields. The global lithospheric magnetic anomaly model has progressed considerably; for example, the shortest wavelengths reflected in the spatial resolution have improved from hundreds of kilometers to tens of kilometers. However, modeling still faces major challenges; for example, the accuracy of the model remains low, amounting to a few hundred nanotesla. In this study, we provide a comprehensive review of the techniques for compiling magnetic anomalies at various scales and discuss the key methodologies for processing and compiling them. Furthermore, we address the complexities involved in modeling the global lithospheric magnetic field. Our objective was to address the shortcomings of lithospheric magnetic anomaly modeling and develop a high-precision, independent, and controllable lithospheric magnetic field model for China.

Details

Language :
Chinese
ISSN :
20971893
Volume :
55
Issue :
6
Database :
Directory of Open Access Journals
Journal :
地球与行星物理论评
Publication Type :
Academic Journal
Accession number :
edsdoj.6ce22490b6a04b978ffc2a18dc41473a
Document Type :
article
Full Text :
https://doi.org/10.19975/j.dqyxx.2024-008