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首页> 外文期刊>Sedimentary geology >Revisiting Late Paleocene Lower Wilcox deltas, Gulf of Mexico: River-dominated or mixed-process deltas?
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Revisiting Late Paleocene Lower Wilcox deltas, Gulf of Mexico: River-dominated or mixed-process deltas?

机译:重访晚更新世晚墨西哥湾下威尔科克斯三角洲:以河为主的三角洲还是混合过程三角洲?

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摘要

Spatial and temporal changes in physical depositional processes of shallow-marine deltas affect facies distributions, which are critical for reconstructing paleogeography and predicting reservoir heterogeneities. The updated interpretation of the classical ancient 'river-dominated' Lower Wilcox delta in the Gulf of Mexico suggests more significant process variations than previously suggested. The dominance of the storm-wave process is indicated by wave-ripple laminae and combined-flow ripple laminae in the fair-weather intervals, and hummocky/swaley cross-stratification and low-angle laminae in the storm beds. However, the relatively simple alternation of fair-weather beds and storm beds is complicated by the presence of: 1) normal and inversely graded siltstone to very fine-grained sandstone beds, suggesting hyperpycnites generated during the river flooding season; 2) mud-dominated heterolithics with delicate mud rhythmites, suggesting tidal modulation between the storm events. The storm-wave generated succession, with preservation of both river flood and tidal signals during fair-weather condition, represents regressive shoreline to-shelf outbuilding. The wave-dominated delta or shoreface deposits are commonly truncated by fluvial-dominated, tide-influenced distributary channels, then overlain by tidal heterolithics and gradually open-shelf deposits, suggesting the development of small estuaries during transgressive phases of the Wilcox shoreline. The interpreted mixed process delta is linked to the last growth stage of the Lower Wilcox Group, prior to inundation of the Texas shelf by thick marine mudstones. Its depositional setting was characterized by the widest Lower Wilcox shelf (>50 km) and a weakening sediment supply, resulting in a stronger wave and tide influence, relative to a weak fluvial influence. This work thus provides a well-constrained example of the complex interplay of fluvial, wave, and tidal currents in a process stratigraphy where decreasing river flux and relative sea level rise allowed wave reworking to become the dominant theme, even though the same system has been previously interpreted as a classic river-dominated delta. Many existing interpretations of ancient deltas thought to have mainly been controlled by a single process may need to be revisited and revised to take into account the natural spatial and temporal variability inherent to the shallow marine realm. (C) 2019 Elsevier B.V. All rights reserved.
机译:浅海三角洲物理沉积过程的时空变化影响相分布,这对于重建古地理学和预测储层非均质性至关重要。在墨西哥湾,对经典的古代“河为主导”的下威尔科克斯三角洲的最新解释表明,与以前所建议的相比,过程变化更大。风暴波过程的优势表现为在晴朗天气间隔内有波纹状波状层流和合流波纹状层状流,以及暴风床中的高架/ swaley交叉分层和低角度层状流。但是,相对简单的天气天气床和暴雨床的交替由于以下因素的存在而变得复杂:1)正常的和反梯度的粉砂岩床到非常细粒度的砂岩床床,表明在河洪季节产生了高辉石岩; 2)泥浆占主导地位的异质岩具有精细的泥浆节律,表明风暴事件之间的潮汐调制。风暴波产生的演替过程,在天气条件良好的情况下,保留了河道洪水和潮汐信号,代表了海岸线向货架的退化。波浪主导的三角洲或滨海沉积物通常被河流主导,受潮汐影响的分流河道截断,然后被潮汐异质岩和逐渐开放的沉积物覆盖,这表明在威尔科克斯海岸海侵阶段小河口的发展。解释过的混合过程三角洲与下威尔科克斯群的最后一个生长阶段有关,这是在得克萨斯陆架被厚厚的海洋泥岩淹没之前。其沉积环境的特征是下威尔科克斯架最宽(> 50 km)和沉积物供应减弱,相对于较弱的河流影响,其波和潮汐影响更强。因此,这项工作提供了一个很好的例子,说明了流程地层中河流,波浪和潮汐流之间复杂的相互作用,在该过程中,河流通量的减小和相对海平面的上升使波浪的重做成为主要主题,即使同一系统已经被采用。以前被解释为经典的以河为主导的三角洲。人们可能需要重新研究和修订许多被认为主要是由单一过程控制的古代三角洲的现有解释,以考虑到浅海域固有的自然时空变异性。 (C)2019 Elsevier B.V.保留所有权利。

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