采用模糊 C-means 聚类方法确定印度东部北辛格布姆移动带岩体的岩石物理特征

IF 2.3 4区 地球科学 Acta Geophysica Pub Date : 2024-07-11 DOI:10.1007/s11600-024-01402-7
Rama Chandrudu Arasada, Santosh Kumar, Gangumalla Srinivasa Rao, Anirban Biswas, Prabodha Ranjan Sahoo, Sahendra Singh
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引用次数: 0

摘要

通过岩石物理数据分析确定各种岩石类型的特征,对于理解地质过程和提高针对成矿区的地球物理方法的效率至关重要。本研究采用模糊 C-Means (FCM)聚类算法,根据岩石物理特性对北辛格布姆移动带西段的岩体进行自动分类。对研究区 326 个岩石样本的实验室测量结果显示,密度(约 2350-3150 kg/m3)和磁感应强度(10-5 SI 至 10-1 SI)值的范围很广。进一步的 FCM 分析显示出三个不同的岩群:(i) 岩群 1 显示出高密度和低磁感应强度的特征,主要包括偏辉岩、辉绿岩和云母片岩;(ii) 岩群 2 显示出低密度和低磁感应强度的特征,主要包括偏辉岩(辉绿岩、石英岩和云母片岩);(iii) 岩群 3 也主要包括偏辉岩,但显示出低密度和高磁感应强度的特征。不同组群中岩石类型的重叠可能表明次生地质过程(如变质、蚀变和风化)对岩石物理测量的影响,岩石学研究也证实了这一点。总之,本研究证明了 FCM 算法在岩性自动分类和从岩石物理测量结果推断相关地质过程方面的潜在实用性。此外,地球物理和岩石物理聚类之间的相关性突出了岩石物理信息在自动地质/矿物绘图中的作用。然而,详细尺度上的聚类属性的复杂性表明,未来在国家超级陨石监测站的研究应侧重于全面的多参数岩石物理和地球化学测量。这种方法将有助于制定更好的三维地球物理数据反演策略,并解决岩石物理数据解释的复杂性。
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A fuzzy C-means clustering approach for petrophysical characterization of lithounits in the North Singhbhum Mobile Belt, Eastern India

The characterization of the various rock types through petrophysical data analysis is essential for comprehending geological processes and enhancing the efficacy of geophysical approaches aimed at mineralization zones. In the present study, a Fuzzy C-Means (FCM) clustering algorithm was employed to automatically classify lithounits within the western sector of the North Singhbhum Mobile Belt based on the petrophysical properties. Laboratory measurements of 326 rock samples from the study area show a wide range of density (~2350–3150 kg/m3) and magnetic susceptibility (10−5 SI to 10−1 SI) values. Further FCM analysis reveals three distinct clusters: (i) cluster 1 displays high density and low magnetic susceptibility responses and comprises majorly metabasic, phyllite, and mica schist rocks, (ii) cluster 2 shows low density and low magnetic susceptibility characteristics and contains mainly metasedimentary rocks (phyllite, quartzite, and mica schist) and (iii) cluster 3 also primarily encompasses metasedimentary rocks, but it displays the low density and high magnetic susceptibility characteristics. Overlap of rock types in different clusters probably indicates the influence of secondary geological processes on the petrophysical measurements such as metamorphism, alteration, and weathering, which is also supported by the petrographical studies. Overall, the present study demonstrates the potential utility of the FCM algorithm for automatic lithology classification and inferring the associated geological processes from the petrophysical measurements. Furthermore, the correlation between the geophysical and petrophysical clusters highlights the role of petrophysical information in the automatic geological/mineral mapping. However, the complexity in cluster attributes on a detailed scale suggests that future studies in the NSMB should focus on comprehensive multi-parameter petrophysical and geochemical measurements. This approach will help in developing better strategies for 3D geophysical data inversion and resolve the complexities in petrophysical data interpretation.

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来源期刊
Acta Geophysica
Acta Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.80
自引率
13.00%
发文量
251
期刊介绍: Acta Geophysica is open to all kinds of manuscripts including research and review articles, short communications, comments to published papers, letters to the Editor as well as book reviews. Some of the issues are fully devoted to particular topics; we do encourage proposals for such topical issues. We accept submissions from scientists world-wide, offering high scientific and editorial standard and comprehensive treatment of the discussed topics.
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