美国南达科塔州弗朗西斯湖皮埃尔页岩基底地层约束脉阵列

Q3 Earth and Planetary Sciences
H. Maher, S. Ferguson, Ryan Korth, J. Marshall, Laura Pickett
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引用次数: 1

摘要

在南达科塔州中南部密苏里河上的Francis Case湖沿岸,一个独特的地层约束脉阵列出现在皮埃尔页岩的基底上。该阵列的厚度通常为2-4米,在50- 50公里的距离上持续露出地面,占地面积很大。灰分层定义了脉阵列的上下边界。垂直矿脉的两个亚正交优选方向(东北和东南走向)确定了一个区域格局。按体积计算,垂直矿脉占岩石的1-2%。更薄,更不连续,不规则的水平静脉也会出现。对比Niobrara白垩系顶部直接下伏泥灰岩的阵列方向和关节/静脉模式,可以发现明显的差异。导线数据表明,脉阵列具有均匀的水平延伸特征。垂直矿脉一般厚1 ~ 2厘米,含有块状黄钾铁矾、亚硒酸盐和纤维石膏。黄钾铁矾和纤维石膏的丰度与风化剖面上的位置有明显的相关性,这些阶段被解释为现代风化过程中原有亚硒酸盐的替代。然而,对于初始脉阵的形成,表明它们与现代风化无关,形成于深部:(1)脉阵宽度/频率与风化剖面位置缺乏相关性;(2)区域范围;(3)一致的偏好取向;(4)水平延伸均匀;(5)亚硒酸盐的粗粒性。一致的走向模式表明受区域应力场的影响。静脉阵列形成的机制/时间尚不清楚。成岩作用的形成,在泥岩中尤为重要,可以解释地层约束特征和各向同性水平应变,被认为是最有可能的。在冰川负荷期间形成是一种有趣的可能性。脉阵列的定位可能是由于沙伦泉组的主岩Burning Brule段的富有机质特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strata-bound vein array in the basal Pierre Shale, Lake Francis Case, South Dakota, U.S.A.
A distinctive strata-bound vein array occurs in the basal Pierre Shale exposed along the shores of Lake Francis Case, a reservoir on the Missouri River in south-central South Dakota. Typically 2–4 meters in thickness, the array consistently outcrops over a >50-km distance, a significant areal footprint. Ash layers define the upper and lower bounds of the vein array. Two, suborthogonal, preferred directions of vertical veins (northeast and southeast strike) define a regional pattern. By volume, vertical veins comprise 1–2% of the rock. Thinner, more discontinuous, and irregular horizontal veins also occur. Comparisons between array orientations and the joint/vein pattern in the immediately underlying marls of the top of the Niobrara Chalk identify distinct differences. Traverse data suggest that the vein arrays are characterized by uniform horizontal extension. Vertical veins in the array are typically 1–2 centimeters thick and contain massive jarosite, selenite, and fibrous gypsum. The abundance of jarosite and fibrous gypsum distinctly correlates with position in the weathering profile, and these phases are interpreted as due to replacement of original selenite during modern weathering. However, for initial vein array formation, the following suggests that they are not related to modern weathering and formed at depth: (1) a lack of correlation of vein width/frequency with position in the weathering profile; (2) the regional extent; (3) the consistent preferred orientations; (4) the uniform horizontal extension; and (5) the coarse-grained character of the selenite. The consistent strike pattern suggests influence of a regional stress field. The mechanism/timing of vein array formation is unclear. Formation due to diagenetic processes, which are especially significant in mud rocks, would explain the strata-bound character and isotropic horizontal strain and is considered most likely. Formation during glacial loading is one intriguing possibility. Localization of the vein array may be due to the organic-rich character of the host Burning Brule Member of the Sharon Springs Formation.
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来源期刊
Rocky Mountain Geology
Rocky Mountain Geology Earth and Planetary Sciences-Geology
CiteScore
1.10
自引率
0.00%
发文量
4
期刊介绍: Rocky Mountain Geology (formerly Contributions to Geology) is published twice yearly by the Department of Geology and Geophysics at the University of Wyoming. The focus of the journal is regional geology and paleontology of the Rocky Mountains and adjacent areas of western North America. This high-impact, scholarly journal, is an important resource for professional earth scientists. The high-quality, refereed articles report original research by top specialists in all aspects of geology and paleontology in the greater Rocky Mountain region.
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