Impact of wave, tides, and fluid mud on fluvial discharge across a compound clinoform (Pliocene Orinoco Delta)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ariana Osman, Ronald J. Steel, Ryan Ramsook, And Cornel Olariu
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Abstract

Compound clinoforms are well-recognized in modern large muddy deltas and in some ancient deltas, but there is still a lack of understanding regarding their lithology variations and the process by which sand from the shoreline clinothem reaches the subaqueous clinothem foresets that are sometimes 100 km away. Net-to-gross, thickness and facies association evaluation show overall coarsening-upward through a 191 m thick exposure of the late Pliocene Orinoco, Lower Morne L'Enfer Formation, with a distinct tripartite lithology distribution. The subaqueous clinothem records a lower, relatively muddy coarsening-upward interval, 112 m thick, with net-to-gross increasing from zero to 60%. On the lower delta front, zero net sand units show graded beds of silt and mud with occasional spring–neap rhythmites, strongly suggesting gravity flows influenced by tidal currents. These foreset beds are overlain by structureless very fine sand, interbedded with deformed wavy to lenticular, grey fluid mud layers that rapidly accumulated near the subaqueous clinoform rollover point. The tidally dominated subaqueous platform (subaqueous delta topset), 1 to 4 m thick, shows zero net sand units with anomalously high mud content, >70%, due to the high near-bed suspended sediment concentration of externally derived fluid mud that migrated littorally alongshore from the Amazon Delta. The interaction of freshwater river flood discharge with fluid-mud banks gave rise to density stratification with fine sand hypopycnally dispersing as a turbulent layer above the denser fluid-mud carpet. The shoreline clinothem (<8 m thick) has high net-to-gross, >85%, attributed to winnowing of sediment by waves and tides. Utilizing net-to-gross trends and facies changes provide useful criteria to identify compound clinoforms in the rock record. The Orinoco Delta deposits, however, are unusual, since fluid mud hinders sand deposition on the platform, allowing for easy identification of platform facies and a clear distinction between the subaqueous and shoreline clinothem in outcrop.
波浪、潮汐和流体泥浆对穿过复合斜地形的河流流量的影响(上新世奥里诺科河三角洲)
复合斜形在现代大型泥质三角洲和一些古代三角洲中得到了广泛的认识,但对其岩性变化以及岸线斜形沉积的砂体到达100公里外水下斜形沉积的过程仍缺乏认识。净粗比、厚度和相组合评价表明,上新世奥里诺科下莫纳尔恩弗组厚度为191 m,整体上呈粗化趋势,具有明显的三段式岩性分布。水下斜层呈较低的、相对浑浊的粗化向上段,厚度为112 m,净毛比从0增加到60%。在三角洲前缘下部,零净沙单元显示出分级的粉砂和泥层,偶有小潮韵律,强烈暗示受潮流影响的重力流。这些森林层被无结构的极细砂覆盖,与变形的波状到透镜状的灰色流体泥层互层,这些流体泥层在水下斜山形翻转点附近迅速积聚。受潮汐控制的水下平台(水下三角洲顶部)厚度为1 ~ 4 m,由于亚马逊三角洲沿岸沿海迁移的外源流体泥浆的近层悬浮沉积物浓度很高,因此净砂单元为零,泥浆含量异常高,达70%。淡水河洪水与流泥滩的相互作用形成了密度分层,细沙在较密的流泥地毯上以湍流层的形式低空分散。由于波浪和潮汐对沉积物的筛分作用,岸线斜层(厚约8米)的净毛比高达85%。利用净-总趋势和相变化为识别岩石记录中的复合斜形提供了有用的标准。然而,奥里诺科河三角洲的沉积物是不寻常的,因为流体泥浆阻碍了台地上的砂沉积,因此很容易识别台地相,并在露头中明确区分水下和岸线斜层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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