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Non lineal correlation between the mean susceptibility, the paramagnetic contribution to the susceptibility andthe lithology in the western Central-Pyrenees. Implications to the AMS studies

机译:平均磁化率,顺磁性对磁化率和磁化率的非线性相关性 中比利牛斯西部的岩性。对ams研究的启示

摘要

The magnetic susceptibility studies and its application to the fabric studies depend on the mineralogicalsusceptibility sources. The mineralogical characterization of ferromagnetic phases has been developedparallel to the paleomagnetism techniques. While the ferromagnetic or paramagnetic particles cannotchange along a cross-section of an orogen, because they are related with the same source area, similardiagenetic processes and fluid compositions. The different weight of them to the susceptibility can changein a significant manner in the same lithological unit or even at outcrop scale. The general assumption thatclay rich levels can represent a higher paramagnetic contribution to the susceptibility is true in some cases,while in others the expected paramagnetic contribution can differ significantly respect the expected values:high paramagnetic contribution in detrital continental deposits or low values in clay rich levels as the elevelsof the Bouma sequence. With independence of the studied lithological unit, higher values ofparamagnetic contribution to the susceptibility show more oblate fabrics or prolate fabrics and lowervalues of the degree of anisotropy in the most ferromagnetic samples. The relation between Km and theparamagnetic contribution to the susceptibility shows that only in a Km range this relation is direct. Theseresults show that a special attention in the analysis of the paramagnetic contribution to the susceptibilitymust be made in the AMS studies. The utilization of magnetic parameters, as T or P´, as an indicator ofintensity of deformation (clustering of particles) only can be used in sectors without changes in theparamagnetic contribution to the susceptibility, even when the external lithological aspect can be verysimilar and the samples comes from the same structural position
机译:磁化率研究及其在织物研究中的应用取决于矿物学的磁化率来源。铁磁相的矿物学特征已经与古磁学技术平行发展。尽管铁磁或顺磁粒子无法沿造山带的横截面变化,但由于它们与相同的源区域,相似的成岩过程和流体成分有关。在相同的岩性单元中,甚至在露头规模下,它们对磁化率的不同权重都可能发生显着变化。一般的假设是,在某些情况下,富含粘土的水平可以代表对磁化率的更高的顺磁贡献,而在另一些情况下,预期的顺磁性贡献在期望值方面可能有很大的不同:碎屑大陆沉积物中的高顺磁贡献或富含粘土的水平中的较低值作为Bouma序列的最高水平。随着所研究岩性单元的独立性,在大多数铁磁样品中,较高的顺磁对磁化率的贡献显示出更多的扁纤维或扁纤维,以及各向异性程度的较低值。 Km与顺磁性对磁化率的关系表明,只有在Km范围内,这种关系才是直接的。这些结果表明,在AMS研究中必须特别注意顺磁对磁化率的影响分析。利用磁参数T或P´作为变形强度(颗粒团聚)的指标,即使在外部岩性非常相似且样品不受影响的情况下,也只能在不改变顺磁对磁化率影响的扇区中使用来自相同的结构位置

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