首页> 外文期刊>Sedimentary geology >Incised valley fill interpretation for Mississippian Black Hand Sandstone, Appalachian Basin, USA: Implications for glacial eustasy at Kinderhookian-Osagean (Tn2-Tn3) boundary
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Incised valley fill interpretation for Mississippian Black Hand Sandstone, Appalachian Basin, USA: Implications for glacial eustasy at Kinderhookian-Osagean (Tn2-Tn3) boundary

机译:美国阿巴拉契亚盆地密西西比黑手砂岩的切入谷填充解释:对金德胡克-奥萨甘(Tn2-Tn3)边界的冰川摇晃的影响

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摘要

Lower Mississippian strata of east-central Ohio are predominantly fine-grained marine deposits of the Cuyahoga and Logan formations. Within these sediments is the Black Hand Sandstone of the Cuyahoga Formation. The Black Hand Sandstone is a multistory, crossbedded, coarse-grained conglomeratic sandstone. The contact between the Black Hand Sandstone and the subjacent Cuyahoga Formation is sharp and scoured, with intraclasts of the Cuyahoga Formation incorporated into the basal Black Hand Sandstone. The Black Hand Sandstone was previously thought to represent a distributary channel deposit; however, the combination of lithofacies and architectural elements indicates deposition in a braided stream setting. The Cuyahoga Formation was deposited in a shallow marine setting. The erosional basal contact of the Black Hand Sandstone and the juxtaposition of fluvial and marine sediments suggests a sequence boundary. The geographic distribution of the Black Hand Sandstone combined with the evidence for a sequence boundary suggests deposition in an incised valley. The age of the Black Hand Sandstone is key to inferring the causes of valley incision. The Black Hand Sandstone is nearly devoid of body fossils, necessitating a biostratigraphic analysis of the surrounding Cuyahoga and Logan formations. Analysis indicates the Logan Formation is early Osagean age. Data from the Cuyahoga Formation suggest a Kinderhookian age with a possible transition to the Osagean in the uppermost Cuyahoga Formation. This constrains the age of the Black Hand Sandstone to the transition at the Kinderhookian-Osagean boundary. Recent reports indicate late Kinderhookian (Tournaisian, Tn2) Gondwanan glaciation based upon tillites and sharp excursions in stable-isotope curves. A glacio-eustatic fall in sea level is inferred to have caused incision of the Cuyahoga Formation, followed by deposition of the Black Hand Sandstone and Logan Formation during the subsequent sea level rise. The associated unconformity correlates to the sequence boundary at the Kinderhookian-Osagean boundary in the stratotype area of North America, and the correlative Tn2-Tn3 boundary worldwide, supporting the hypothesis of a global eustatic event at this time.
机译:俄亥俄州中东部的密西西比下层地层主要是Cuhohoga和Logan地层的细粒海相沉积物。在这些沉积物中是Cuyahoga组的黑手砂岩。黑手砂岩是多层,交错层状,粗粒状砾岩。黑手砂岩和下层Cuyahoga地层之间的接触很尖锐,并且冲刷得很深,而Cuyahoga地层的碎屑合并到了基底黑手砂岩中。黑手砂岩以前被认为是分流河道的沉积。然而,岩相和建筑元素的结合表明在辫状流环境中的沉积。 Cuyahoga组沉积在浅海环境中。黑手砂岩的侵蚀性基底接触与河流和海洋沉积物的并置表明了层序边界。黑手砂岩的地理分布与序列边界的证据相结合,表明沉积在一个切开的山谷中。黑手砂岩的年龄是推断山谷切口成因的关键。黑手砂岩几乎不含人体化石,因此需要对周围的凯霍加河和洛根岩层进行生物地层分析。分析表明洛根组是奥萨根早期。 Cuyahoga组的数据表明,Kinderhookian时代可能会过渡到最上层Cuyahoga组中的Osagean。这将黑手砂岩的年龄限制在Kinderhookian-Osagean边界的过渡处。最近的报告表明,晚稻幼虫(Tournaisian,Tn2)冈第瓦南冰川作用是基于岩层和稳定同位素曲线的急剧偏移。可以推断,由于海平面冰川缓和下降,导致Cuyahoga层切开,随后在随后的海平面上升期间沉积了黑手砂岩和Logan层。相关的不整合性与北美平流型地区的Kinderhookian-Osagean边界的序列边界以及全球相关的Tn2-Tn3边界相关,这支持了此时全球泛滥事件的假设。

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