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首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >The role of tidal, wave and river currents in the evolution of mixed-energy deltas: Example from the Lajas Formation (Argentina)
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The role of tidal, wave and river currents in the evolution of mixed-energy deltas: Example from the Lajas Formation (Argentina)

机译:潮汐,波浪和河流流在混合能三角洲演化中的作用:以拉哈斯组为例(阿根廷)

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Many modern deltas show complex morphologies and architectures related to the interplay of river, wave and tidal currents. However, methods for extracting the signature of the individual processes from the stratigraphic architecture are poorly developed. Through an analysis of facies, palaeocurrents and stratigraphic stacking patterns in the Jurassic Lajas Formation, this paper: (i) separates the signals of wave, tide and river currents; (ii) illustrates the result of strong tidal reworking in the distal reaches of deltaic systems; and (iii) discusses the implications of this reworking for the evolution of mixed-energy systems and their reservoir heterogeneities. The Lajas Formation, a sand-rich, shallow-marine, mixed-energy deltaic system in the Neuquen Basin of Argentina, previously defined as a tide-dominated system, presents an exceptional example of process variability at different scales. Tidal signals are predominantly located in the delta front, the subaqueous platform and the distributary channel deposits. Tidal currents vigorously reworked the delta front during transgressions, producing intensely cross-stratified, sheet-like, sandstone units. In the subaqueous platform, described for the first time in an ancient outcrop example, the tidal reworking was confined within subtidal channels. The intensive tidal reworking in the distal reaches of the regressive delta front could not have been predicted from knowledge of the coeval proximal reaches of the regressive delta front. The wave signals occur mainly in the shelf or shoreface deposits. The fluvial signals increase in abundance proximally but are always mixed with the other processes. The Lajas system is an unusual clean-water (i.e. very little mud is present in the system), sand-rich deltaic system, very different from the majority of mud-rich, modern tide-influenced examples. The sand-rich character is a combination of source proximity, syndepositional tectonic activity and strong tidal-current reworking, which produced amalgamated sandstone bodies in the delta-front area, and a final stratigraphic record very different from the simple coarsening-upward trends of river-dominated and wave-dominated delta fronts.
机译:许多现代三角洲显示出复杂的形态和结构,与河流,波浪和潮流的相互作用有关。但是,从地层构造中提取各个过程特征的方法开发得很差。通过分析侏罗纪拉哈斯组的相,古流和地层堆积模式,本文: (ii)说明了三角洲系统远端强力返潮的结果; (iii)讨论了这种返工对混合能源系统及其储层非均质性演化的影响。 Lajas地层是阿根廷内乌肯盆地中一个富含沙子,浅海,混合能量的三角洲系统,以前被定义为潮汐为主的系统,它是不同规模过程变异性的一个杰出例子。潮汐信号主要位于三角洲前缘,水下平台和分流河道沉积物中。在海侵期间,潮流强烈地改造了三角洲的前缘,产生了强烈交叉分层的片状砂岩单元。在古代露头示例中首次描述的水下平台中,潮汐返修工作被限制在潮下带通道内。从回归三角洲前锋的近代近程知识尚无法预测回归三角洲前锋远侧密集的潮汐返工。波浪信号主要发生在陆架或岸面沉积物中。河流信号向近端丰度增加,但总是与其他过程混合在一起。 Lajas系统是一种不寻常的清洁水(即系统中几乎没有泥浆),富含沙子的三角洲系统,与大多数受泥浆影响,受潮汐影响的现代示例有很大不同。富砂特征是源区邻近性,沉积构造活动和强潮流改造共同作用的结果,在三角洲前缘地区产生了融合的砂岩体,最终的地层记录与河流的简单的粗化-向上趋势截然不同。主导和波浪主导的三角洲锋。

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