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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Relationships between pore space anisotropy and anisotropy of physical properties of silicoclastic rocks from the Corbières-Minervois fold-and-thrust-belt (north-east Pyrenees, France)
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Relationships between pore space anisotropy and anisotropy of physical properties of silicoclastic rocks from the Corbières-Minervois fold-and-thrust-belt (north-east Pyrenees, France)

机译:Corbières-Minervois褶皱-冲断带的硅质碎屑岩孔隙空间各向异性与物理性质各向异性之间的关系(法国东北比利牛斯)

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摘要

We present a study integrating petrophysical measurements along a general N-S section of the Corbières-Minervois fold and thrust belt (NE Pyrenees, France) in order to study the petrofabric of weakly deformed sediments. We focus on the relationship between the evolution of deformation measured with the anisotropy of various physical properties (anisotropy of magnetic susceptibility (AMS), anisotropy of P-waves velocity (APV) and anisotropy of electrical conductivity (AEC)) and the distribution of the porous space. The origin of AMS fabric is interpreted as recording a layer parallel shortening oriented N145, steadily throughout the studied section with local gradient associated with folding as sites close to the forelimbs. AEC is in good agreement with AMS results and records the same shortening direction. The most probable source of anisotropy for AMS and AEC is the preferred orientation of phyllosilicate minerals. APV, which reflects the distribution of porous space, is more complex and is controlled by the tectonic style of the magnetic fabric. The porosity is a flat-lying-bedding porosity, where the magnetic fabric is poorly evolved and it becomes a flat-lying-pressure-solution-cleavage porosity where the magnetic fabric is tectonic. At regional scale, we show that changes in anisotropy of petrophysical properties are controlled by individual structures, like regional fold or thrust fault and occurred mainly before folding as a consequence of a well-expressed NNE-SSW layer parallel shortening. The folds and thrust faults are developed subsequently from inherited E-W basement faults. This explains why the structural grain of the sedimentary cover, expressed notably by the magnetic lineation, is oblique to the major structures of the cross-section: the Alaric Anticline and the North-Mouthoumet Fault.
机译:我们目前对Corbières-Minervois褶皱和逆冲带(法国NE Pyrenees,法国)的一般N-S剖面进行岩石物理测量研究,以研究弱变形沉积物的岩石构造。我们关注于变形的演变与各种物理性质的各向异性(磁化率的各向异性(AMS),P波速度的各向异性(APV)和电导率的各向异性(AEC))之间的关系以及多孔的空间。 AMS织物的起源被解释为记录了平行于缩短方向的N145层,在整个研究部分中稳定地记录了局部梯度,该梯度与折叠相关,且位置靠近前肢。 AEC与AMS结果非常吻合,并记录了相同的缩短方向。 AMS和AEC的最可能的各向异性来源是页硅酸盐矿物的首选取向。反映多孔空间分布的APV更为复杂,并受磁性织物的构造样式控制。孔隙率是平坦的层状孔隙度,磁性织物在该孔隙中的发育较差,并且在磁性织物为构造性的情况下变为平坦的压力溶液裂解孔隙率。在区域尺度上,我们表明,岩石物理特性各向异性的变化受单个结构的控制,例如区域褶皱或逆冲断层,并且由于NNE-SSW层平行缩短的良好表达而主要发生在褶皱之前。褶皱和逆冲断层是从继承的E-W基底断层发展而来的。这就解释了为什么沉积覆盖物的结构晶粒(特别是用磁力线表示)倾斜于横截面的主要结构:阿拉瑞背斜和北穆图梅特断裂。

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