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Structural heterogeneity and permeability in faulted eolian sandstone: Implications for subsurface modeling of faults

机译:断层风成砂岩的构造非均质性和渗透性:对断层地下模拟的启示

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摘要

We determined the structure and permeability variations of a 4 km-long normal fault by integrating surface mapping with data from five boreholes drilled through the fault (borehole to tens of meters scale). The Big Hole fault outcrops in the Jurassic Navajo Sandstone, central Utah. A total of 363.2 m of oriented drill core was recovered at two sites where fault displacement is 8 and 3-5 m. The main fault core is a narrow zone of intensely comminuted grains that is a maximum of 30 cm thick and is composed of low-porosity amalgamated deformation bands that have slip surfaces on one or both sides. Probe permeameter measurements showed a permeability decline from greater than 2000 to less than 0.1 md as the fault is approached. Whole-core analyses showed that fault core permeability is less than I md and individual deformation band permeability is about 1 md. Using these data, we calculated the bulk permeability of the fault zone. Calculated transverse permeability over length scales of 5-10 m is 30-40 md, approximately 1-4% the value of the host rock. An inverse power mean calculation (representing a fault array with complex geometry) yielded total fault-zone permeabilities of 7-57 md. The bulk fault-zone permeability is most sensitive to variations in fault core thickness, which exhibits the greatest variability of the fault components.
机译:通过将表面映射与通过断层钻出的五个钻孔(井眼到数十米规模)的数据相结合,我们确定了4 km长的正常断层的结构和渗透率变化。大孔断层在犹他州中部的侏罗纪纳瓦霍砂岩中露头。在断层位移分别为8和3-5 m的两个位置上共回收了363.2 m的定向钻芯。主断层芯是一个强烈粉碎的晶粒的狭窄区域,最大厚度为30 cm,由低孔隙度的合并变形带组成,这些变形带的一侧或两侧具有滑动面。探针渗透仪的测量结果表明,随着断层的临近,渗透率从大于2000下降到小于0.1 md。全岩心分析表明,断层岩心渗透率小于I md,单个变形带渗透率约为1 md。使用这些数据,我们计算了断层带的整体渗透率。在5-10 m的长度尺度上计算出的横向渗透率为30-40 md,约为基质岩石的1-4%。逆功率均值计算(代表具有复杂几何形状的断层阵列)得出的总断层带渗透率为7-57 md。整体断层带渗透率对断层芯厚度的变化最敏感,断层厚度变化最大。

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