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首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Internal flow structures in columnar jointed basalt from Hrepphólar, Iceland: II. Magnetic anisotropy and rock magnetic properties
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Internal flow structures in columnar jointed basalt from Hrepphólar, Iceland: II. Magnetic anisotropy and rock magnetic properties

机译:冰岛Hrepphólar的柱状连接玄武岩内部流动结构:II。 磁各向异性和岩石磁性特性

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The anisotropy of magnetic susceptibility (AMS) and rock magnetic properties were measured on specimens from a basalt plate that was cut from a vertical section of a basalt column from Hrepphólar, Iceland. Macroscopic structures are clearly distinguishable in the plate, including banding inferred to represent viscous fingering parallel to the vertical axis of the column. Rock magnetic experiments indicate that the dominant ferromagnetic (sensu lato) mineral is titanomagnetite, Fe _(3-x)Ti _xO _4, with a Ti-composition of x = ~0. 6. Magnetic properties are related to the position within the plate and reveal a dominant volume fraction of single domain titanomagnetite in the center of the basalt column, with multidomain titanomagnetite away from the center. The AMS determined by low-field measurements shows an inconclusive relationship with the visual structures, which arises from variation of the grain size (i. e., single domain versus multidomain) across the column. In contrast, the AMS measured with a high-field torsion magnetometer avoids the complication of magnetic domain state, as is demonstrated in this contribution, and additionally allows for the separation of ferrimagnetic from paramagnetic sub-fabrics. Both sub-fabrics display a clear relationship with the macroscopic structures and support the hypothesis that vertical flow of melt took place during development of the Hrepphólar columnar basalt. Maximum susceptibility axes of the ferrimagnetic sub-fabric are grouped near the vertical axis of the column. The paramagnetic sub-fabric varies systematically across the column in coincidence with internal structure. The shape of the magnetic susceptibility ellipsoid varies across the basalt column, showing an increasingly prolate fabric toward its center.
机译:从来自冰岛HrepPhólar的玄武岩柱的垂直部分切割的玄武岩板上测量磁敏感性(AMS)和岩石磁性的各向异性。宏观结构在板中清楚地区分,包括带推断的条带,以表示与柱的垂直轴线平行的粘性手指。岩石磁性实验表明,主导铁磁性(Sensu Lato)矿物是钛镁镁石,Fe _(3-x)Ti _XO _4,具有X =〜0的Ti组成。 6.磁性与板内的位置有关,并揭示玄武岩柱中心的单结构域钛磁石的主要体积分数,远离中心的多麦田Titanomagnetite。由低场测量确定的AMS显示与视觉结构的不确定关系,从而从粒度(即,单个域,单域,多麦田)的变化中出现。相反,用高场扭转磁力计测量的AM避免了磁畴稳态的复杂性,如在本贡献中所示,并且另外允许从顺磁性亚织物中分离铁磁石。两个亚织物显示出与宏观结构的明显关系,并支持熔体垂直流动在Hrepphólar柱状玄武岩的开发过程中发生的假设。亚铁磁性亚织物的最大敏感性轴在柱的垂直轴附近进行分组。顺磁子织物在圆柱上有系统地改变,与内部结构吻合。磁性敏感性椭圆体的形状在玄武岩柱上变化,朝向其中心显示出越来越长的织物。

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