首页> 外文期刊>Journal of the Geological Society of India >Modelling relationship between bulk susceptibility and AMS in rocks consisting of two magnetic fractions represented by ferromagnetic and paramagnetic minerals — Implications for understanding magnetic fabrics in deformed rocks
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Modelling relationship between bulk susceptibility and AMS in rocks consisting of two magnetic fractions represented by ferromagnetic and paramagnetic minerals — Implications for understanding magnetic fabrics in deformed rocks

机译:由铁磁和顺磁矿物代表的两个磁性成分组成的岩石中的磁化率与AMS之间的关系建模-对了解变形岩石中磁性结构的意义

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摘要

Measurement of Anisotropy of Magnetic Susceptibility (AMS) has become an important tool for Structural Geological analysis in the past few decades. In the past, AMS data have been used for petrofabric analysis of deformed rocks as well as for gauging strain. However, the AMS of some rocks can be carried by both ferromagnetic and paramagnetic minerals. Separating effects of these mineral groups on the rock’s AMS is difficult because of expensive and commercially less available instrumentation. On the other hand, instrumentation is available in most rock magnetic and palaeomagnetic laboratories for resolving bulk susceptibility into ferromagnetic and paramagnetic components. Mathematical modelling was made of the relationship between bulk susceptibility and AMS. If the contribution of the ferromagnetic or the paramagnetic fraction to the rock susceptibility is dominant (let us say higher than 80%), the resultant AMS is relatively near to the AMS of the dominating fraction in all aspects, the degree of AMS, shape parameter and orientation of principal susceptibilities. In the interpretation of the AMS of rocks with dominating one fraction, the resolution of the AMS into paramagnetic and ferromagnetic components is not necessary, the resolution of bulk susceptibility into components is sufficient that can be made using the instrumentation available in most rock magnetic and palaeomagnetic laboratories. Keywords Magnetic anisotropy - Bulk susceptibility - Ferro- and paramagnetic minerals - Mathematical modelling
机译:在过去的几十年中,磁化率各向异性(AMS)的测量已成为进行结构地质分析的重要工具。过去,AMS数据已用于变形岩石的岩石织物分析以及应变测量。但是,某些岩石的AMS可以由铁磁性和顺磁性矿物携带。由于昂贵的仪器和市场上可买到的仪器少,很难将这些矿物群对岩石的AMS进行分离。另一方面,大多数岩石磁性和古磁性实验室都可以使用仪器来将大量磁化率分解为铁磁性和顺磁性成分。建立了体积磁化率与AMS之间关系的数学模型。如果铁磁或顺磁组分对岩石敏感性的贡献占主导地位(假设高于80%),则所得的AMS在各个方面,AMS的程度,形状参数方面都相对接近于主要组分的AMS。和主要敏感性的方向。在解释主要成分为一的岩石的AMS时,不需要将AMS解析为顺磁性和铁磁性成分,而将大部分的磁化率解析为成分,这可以使用大多数岩石磁性和古磁性中可用的仪器来进行。实验室。关键词磁各向异性-磁化率-铁和顺磁性矿物-数学模型

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