Adaptive Window Approach for Curie Depth Calculation Based on Modified Centroid Method and the Application in the South China Block

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS pure and applied geophysics Pub Date : 2024-11-27 DOI:10.1007/s00024-024-03615-9
Wenna Zhou, Hai Tang, Yongkang Chan, Dailei Zhang, Bohu Xu, Yunmeng Wu, Qiang Li
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Abstract

Curie depth plays an important role in the study of geological structures and resource exploration. Conventional methods usually employ a fixed window size for estimation, often resulting in significant inaccuracies. To overcome this deficiency, a new adaptive window Curie depth calculation approach is proposed, which can automatically select the optimal window size across a range of diverse geological conditions to achieve a more precise Curie depth. We validated the new approach using synthetic data, demonstrating that the average error of the bottom depth of the model was reduced compared to traditional methods. Subsequently, we applied the new method to real magnetic data from the South China Block, and a new Curie depth result was obtained and verified using measured ground heat flow data. The mean square error between the derived results and the measured ground heat flow was found to be lower than that of the Curie depth inversed by previous researchers. The adaptive window Curie depth calculation method presented herein exhibited high adaptability and accommodated various geological features. For the South China Block, the Curie depths exhibited a smooth and continuous pattern in stable regions such as cratons, while displaying a distinct uplift in the junction region between fault zones and blocks. This method can not only accurately capture the Curie depth variations across large areas, but also vividly highlight subtle changes in the Curie depth within smaller regions, demonstrating the superiority of this new approach.

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基于修正质心法的自适应窗口居里深度计算方法及其在华南区块的应用
居里深度在地质构造研究和资源勘探中发挥着重要作用。传统的方法通常使用固定的窗口大小进行估计,经常导致显著的不准确性。为了克服这一缺陷,提出了一种新的自适应窗口居里深度计算方法,该方法可以在不同的地质条件下自动选择最优窗口大小,以获得更精确的居里深度。我们使用合成数据验证了新方法,表明与传统方法相比,模型底部深度的平均误差减小了。随后,我们将新方法应用于华南地块的实际磁资料,得到了新的居里深度结果,并利用实测地热流数据进行了验证。推导结果与实测地热流的均方误差小于前人反演的居里深度。本文提出的自适应窗口居里深度计算方法具有较高的适应性,能够适应多种地质特征。对于华南地块而言,在克拉通等稳定区域,居里深度表现为光滑连续的模式,而在断裂带与地块交界处,居里深度表现为明显的隆起。该方法既能准确捕捉大区域的居里深度变化,又能生动地突出小区域居里深度的细微变化,体现了该方法的优越性。
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来源期刊
pure and applied geophysics
pure and applied geophysics 地学-地球化学与地球物理
CiteScore
4.20
自引率
5.00%
发文量
240
审稿时长
9.8 months
期刊介绍: pure and applied geophysics (pageoph), a continuation of the journal "Geofisica pura e applicata", publishes original scientific contributions in the fields of solid Earth, atmospheric and oceanic sciences. Regular and special issues feature thought-provoking reports on active areas of current research and state-of-the-art surveys. Long running journal, founded in 1939 as Geofisica pura e applicata Publishes peer-reviewed original scientific contributions and state-of-the-art surveys in solid earth and atmospheric sciences Features thought-provoking reports on active areas of current research and is a major source for publications on tsunami research Coverage extends to research topics in oceanic sciences See Instructions for Authors on the right hand side.
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