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High-resolution sequence stratigraphy and detrital zircon provenance of the Ordovician Ancell Group in the Iowa and Illinois Basins: Insight into the evolution of midcontinental intracratonic basins of North America.

机译:爱荷华州和伊利诺伊州盆地奥陶纪安塞尔组的高分辨率层序地层学和碎屑锆石物产:洞察北美中陆克拉通盆地的演化。

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摘要

The Middle Ordovician Ancell Group, including the St. Peter Sandstone, Glenwood Shale and Starved Rock Formation, records intracontinental basin development during eustatic sea level changes in Iowa and Illinois. The St. Peter Sandstone overlies the Prairie du Chien Group across an erosional unconformity that marks a major sequence boundary, whereas upper contact of the St. Peter Sandstone with the Glenwood Shale also is a second sequence boundary. Data from 80 wells, selected well logs, and 20 cores were integrated to refine the high-resolution sequence stratigraphy of the Ancell Group. Two main sequences bounded by three sequence boundaries are interpreted to represent 3rd order sequences. Distinctive shallowing-upward parasequences bounded by flooding surfaces in many cores record higher frequency relative sea level fluctuations in the Ancell Group, but these cannot presently be correlated regionally. Facies variations define an aggradational transgressive systems tract (TST), a prograding highstand systems tract (HST) and down stepping falling stage system tract (FSST) in both the St. Peter Sandstone and the Glenwood Shale-Starved Rock Formation units. The St. Peter Sandstone thickens towards the northeast and thins to the northwest and southwest in Iowa. In contrast, the St. Peter Sandstone in Illinois thickens to the south likely recording a prolonged FSST incised valley or channel fill.;Detrital zircon geochronology of 13 samples from the St. Peter Sandstone and Starved Rock Formation define common peaks at 1100-1500 Ma and 2500-2700 Ma with minor components at 1670-1750 Ma and 3000-3600 Ma. The detrital zircon signature is dominated by Archean, and Grenville (1000-1300 Ma) ages. The detrital zircon geochronology indicates that the Ancell Group was sourced directly from the Archean Superior Province to the north and Grenville Province to the northeast, although recycling of Archean grains from the Paleoproterozoic Huron Basin cannot be ruled out. The near complete lack of 1800-1900 Ma ages argues against derivation of detritus from the Trans-Hudson or Penokean Orogens. The Transcontinental Arch northwest of the Iowa Basin acted as a barrier to sediment transport from the Trans-Hudson Orogen. Basement rocks of the Penokean Orogen are inferred to have been covered by water or younger sediments southeast of the Iowa Basin. CIA analyses of Ordovician shale samples from around the Transcontinental Arch indicate that the climate condition during Middle Ordovician time was warm and humid. This is consistent with a paleoclimate interpretation where mechanical erosion and chemical weathering yielded first cycle mature quartz arenites (Witzke, 1980).
机译:奥陶纪中部安塞尔组,包括圣彼得砂岩,格伦伍德页岩和饥饿岩层,记录了爱荷华州和伊利诺伊州海平面喜人变化期间大陆盆地的发展。圣彼得砂岩穿越一个草原不规则面覆盖着草原大集团,该不整合面标志着一个主要的层序边界,而圣彼得砂岩与格伦伍德页岩的高层接触也是第二个层序边界。整合了来自80口井,选定的测井记录和20个岩心的数据,以完善Ancell Group的高分辨率层序地层学。由三个序列边界界定的两个主要序列被解释为代表三阶序列。在许多岩心中,以泛洪面为界的明显的浅向上-向上副序列记录了安塞尔组中较高的相对海平面起伏,但目前尚不能在区域上将其相关。相变定义了圣彼得砂岩单元和格伦伍德页岩饥饿岩层单元中的一个侵积性海侵系统域(TST),一个高架系统域(HST)和一个递减下降阶段系统域(FSST)。在爱荷华州,圣彼得砂岩向东北方向增厚,向西北和西南方向变薄。相比之下,伊利诺伊州的圣彼得砂岩向南增厚,可能记录了延长的FSST切开的山谷或河道填充。; 13个圣彼得砂岩和饥饿岩层样品的碎屑锆石年代学定义了1100-1500 Ma的共同峰和2500-2700 Ma,次要分量分别为1670-1750 Ma和3000-3600 Ma。碎屑锆石的特征主要是太古宙时代和格伦维尔(1000-1300 Ma)年龄。锆石的年代学年代学研究表明,尽管不能排除从古元古代休伦盆地回收的太古代谷物,但安赛尔集团是直接从北部的太古宙斯优质省和东北的格伦维尔省来的。几乎完全缺乏1800-1900 Ma年龄,这反对从反哈德森或Penokean造山带中推导碎屑。爱荷华州盆地西北部的横贯大陆拱起了跨哈德逊造山带泥沙输送的屏障。推断Penokean造山带的基底岩石被爱荷华州盆地东南部的水或较年轻的沉积物所覆盖。 CIA对跨大陆弓周围奥陶纪页岩样品的分析表明,中奥陶纪时期的气候条件是温暖潮湿。这与古气候的解释是一致的,在该解释中,机械侵蚀和化学风化作用产生了第一周期的成熟石英芳烃(Witzke,1980)。

著录项

  • 作者

    Ibrahim, Diar Mohammed.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Petroleum geology.;Geochemistry.;Geology.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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