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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Magnetic versus crystallographic fabrics in a basaltic lava flow
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Magnetic versus crystallographic fabrics in a basaltic lava flow

机译:玄武岩熔岩流中的磁性与晶体织物

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摘要

Combined anisotropy of magnetic susceptibility (AMS) and crystallographic studies were performed within a quaternary lava flow, for which we have a thorough knowledge of the flow direction. Microscope examinations, microprobe analyses and studies of rock magnetic properties show that AMS is carried by homogeneous multidomain Ti-rich titanomagnetite (x ≈ 0.6). This mineral, forming either subhedral isolate individuals or grouped in various elongated aggregates, represents a late crystallized interstitial phase. AMS determined from samples collected in the lower, the middle and the upper part of the flow is characterized by a well-defined magnetic foliation whereas magnetic lineation is generally poorly grouped and therefore meaningless. The foliation plane of the lower and upper part of the flow show an obliquity, which is interpreted as an opposite imbrication indicating a westward flow in agreements with the known flow direction. In the lower part of the lava flow, the tight correlation between AMS and plagioclase lattice preferred orientation suggests that a silicate framework control the titanomagnetite crystallization and thus the orientation of the AMS ellipsoid.
机译:在第四纪熔岩流中进行了磁化率(AMS)和晶体学的联合各向异性研究,为此我们对流动方向有了透彻的了解。显微镜检查,微探针分析和岩石磁性能研究表明,AMS由均质的多畴富钛钛磁铁矿(x≈0.6)承载。这种矿物形成了半面体下的分离个体,或以各种细长的聚集体形式聚集,代表了后期结晶的间隙相。由在流动的下部,中部和上部收集的样品确定的AMS的特征是定义明确的磁叶,而磁线通常分组不善,因此毫无意义。流动的下部和上部的叶状平面显示出倾斜,这被解释为相反的弯曲,表明向西流动与已知流动方向一致。在熔岩流的下部,AMS和斜长石晶格优先取向之间的紧密相关性表明,硅酸盐骨架控制了钛磁铁矿的结晶,从而控制了AMS椭球的取向。

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