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首页> 外文期刊>Polar Research >Applying the anisotropy of magnetic susceptibility technique to the study of the tectonic evolution of the West Spitsbergen Fold-and-Thrust Belt
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Applying the anisotropy of magnetic susceptibility technique to the study of the tectonic evolution of the West Spitsbergen Fold-and-Thrust Belt

机译:将磁化率各向异性用于西斯匹次卑尔根褶皱冲断带构造演化研究

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摘要

We demonstrate the use of the anisotropy of magnetic susceptibility (AMS) method to determine the orientation of the principal tectonic strain directions developed during the formation of the West Spitsbergen Fold-and-Thrust Belt (WSFTB). The AMS measurements and extensive rock-magnetic studies of the Lower Triassic rocks reported here were focused on the recognition of the magnetic fabric, the identification of ferromagnetic minerals and an estimation of the influence of ferro- and paramagnetic minerals on magnetic susceptibility. At most sites, the paramagnetic minerals controlled the magnetic susceptibility, and at only one site the impact of ferromagnetic minerals was higher. The AMS technique documented the presence of different types of magnetic fabrics within the sampled sites. At two sites, a normal (Kmin perpendicular to the bedding) magnetic fabric of sedimentary origin was detected. This was associated with a good clustering of the maximum AMS axes imposed by tectonic strain. The Kmax magnetic ...
机译:我们展示了磁化率各向异性(AMS)方法的使用,以确定在西斯匹次卑尔根褶皱冲断带(WSFTB)形成过程中发展起来的主要构造应变方向的方向。此处报道的下三叠纪岩石的AMS测量和广泛的岩磁研究集中于磁性构造的识别,铁磁性矿物的识别以及铁磁性和顺磁性矿物对磁化率的影响的估计。在大多数场所,顺磁性矿物控制着磁化率,而在只有一个场所,铁磁性矿物的影响更高。 AMS技术记录了采样地点内不同类型磁性织物的存在。在两个位置上,检测到沉积起源的正常(垂直于地层的Kmin)磁性织物。这与构造应变施加的最大AMS轴的良好聚类有关。 Kmax磁性...

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