Paleocene (65–63 and 58.5 ma) marine flooding and 62–60 ma sediment bypass in southern Wyoming, U.S.A.: Implications for Laramide sediment flux to the Gulf of Mexico

IF 2 4区 地球科学 Q1 GEOLOGY
A. Wroblewski, R. Steel
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引用次数: 3

Abstract

Sedimentary structures unique to tidally influenced environments and unambiguously salinity-stressed marine ichnofossil assemblages in the lower Paleocene Ferris and upper Paleocene Hanna formations of Wyoming's Hanna Basin (HB) necessitate major revision of local and regional reconstructions of the Paleocene Western Interior Seaway (WIS). Preserved in sandy estuarine bars, sandy tidal flats, heterolithic distributary channels, bayhead delta, and flood-tide-delta deposits similar those in the modern Trinity River, its bayhead delta, and the San Luis Pass flood-tidal delta on the Texas coast, these these assemblages include Arenicolites, Bergaueria, Fuersichnus, Gyrochorte, Ophiomorpha, Palaeophycus, Planolites, Psilonichnus, Rhizocorallium, Rosselia, Siphonichnus, Skolithos, Spongeliomorpha, Taenidium, Thalassinoides, and tetrapod tracks. Mapping an ∼ 325-m-thick succession of lower Paleocene strata (65 to 63 Ma) around the western HB reveals a series of marine flooding events, each followed by coal accumulation. A similar, 170-m-thick succession of interfingering coastal-plain and restricted-marine strata occurs in the upper Paleocene (58.5 Ma) Hanna Formation, following accumulation of lacustrine and floodplain deposits and an episode of major gravel and cobble progradation from 62 to 60 Ma. These younger ichnofossils record the final major transgression of the WIS and have major implications for the depositional environment of the time-equivalent Waltman Shale in the Wind River Basin to the north and for sediment routing to the Gulf Coast Wilcox sands. Ichnofossils are an underutilized source of physicochemical proxy data that are lifting the veil from the cryptic Paleocene transgressions of the WIS that have for so long remained undetected because of the absence of open-marine body fossils.
美国怀俄明州南部古新世(65-63和58.5 ma)海相洪水和62-60 ma沉积物绕道:对墨西哥湾Laramide沉积物通量的影响
怀俄明汉纳盆地(HB)古新世下Ferris和古新世上Hanna地层中独特的潮汐影响环境的沉积结构和明确的盐度压力下的海洋鱼化石组合需要对古新世西部内陆海道(WIS)的局部和区域重建进行重大修订。这些组合保存在砂质河口沙洲、砂质潮滩、异质时代分流河道、湾头三角洲和与现代三一河、海湾头三角洲和德克萨斯州海岸的Luis山口洪水-潮汐三角洲相似的洪水-潮汐三角洲沉积物中,包括Arenicolites、Bergaueria、Fuersichnus、Gyrochorte、Ophiomorpha、Palaeophycus、Planolites、Psilonichnus、Rhizocorallium、Rosselia、Siphonichnus、Skolithos、sponeliomorpha、Taenidium、Thalassinoides。还有四足动物的足迹。在HB西部周围绘制了一个厚约325米的下古新世地层(65至63 Ma)序列,揭示了一系列海相洪水事件,每次都伴随着煤聚集。在上古新世(58.5 Ma)汉纳组(Hanna组)出现了类似的170米厚的交错海岸平原和限制海相地层序列,之后是湖积和洪泛平原沉积的堆积,以及62 - 60 Ma期间主要的砾石和鹅卵石沉积。这些较年轻的鱼化石记录了WIS的最后一次主要海侵,并对北部风河盆地的Waltman页岩的沉积环境和墨西哥湾沿岸Wilcox砂的沉积路线具有重要意义。鱼类化石是一种未被充分利用的物理化学代理数据来源,它揭开了WIS古新世神秘海侵的面纱,由于缺乏开放海洋生物化石,这些海侵长期以来一直未被发现。
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来源期刊
CiteScore
3.80
自引率
5.00%
发文量
50
审稿时长
3 months
期刊介绍: The journal is broad and international in scope and welcomes contributions that further the fundamental understanding of sedimentary processes, the origin of sedimentary deposits, the workings of sedimentary systems, and the records of earth history contained within sedimentary rocks.
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