首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Depositional facies and the sequence stratigraphic control of a mixed-process influenced clastic wedge in the Cretaceous Western Interior Seaway: The Gallup System, New Mexico, USA
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Depositional facies and the sequence stratigraphic control of a mixed-process influenced clastic wedge in the Cretaceous Western Interior Seaway: The Gallup System, New Mexico, USA

机译:沉积的相和混合过程的序列地层控制受到白垩纪西部室内海关中的混合过程的碎屑楔:盖洛普系统,新墨西哥州,美国

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Depositional facies have been hypothesized to be linked to sequence stratigraphic positions. Also, shoreline systems are built by mixed processes, including rivers, storms, fair-weather waves and tides. Resolving the complexity of shoreline deposition requires detailed quantitative facies analysis with particular attention to heterolithic successions. In this study, 71 sections in a 130 km long outcrop belt of the Cretaceous Gallup Formation in the north-west of the San Juan Basin were measured. Five major facies associations were identified using sedimentological and iconological interpretations, including offshore shelf, non-deltaic shoreline sandstones, deltas, coastal bayline and fluvial. Each facies association also comprises subordinate facies. Depositional facies interpretations are placed in a high-resolution sequence stratigraphic framework that allows for reconstructions of the palaeogeography of individual parasequence sets that demonstrate temporal and spatial evolution of facies associations and depositional processes. The results show that the Gallup is a mixed-process-controlled depositional system with fair-weather and storm-wave dominance, river influence and tide-effect, contrasting with previous interpretations of a solely fair-weather wave-dominated environment. Depositional processes and the resultant facies change with sequence stratigraphic positions in response to relative sea-level changes - particular facies are only deposited in certain systems tracts. Distinction and transition between non-deltaic shorefaces and wave-dominated deltas have also been documented in this study. Non-deltaic shorefaces are characterized by homogeneous sandstones with a wide-range bioturbation index and the absence of mudstones. Wave-dominated deltas are subject to river influence and contain prodelta facies. This study shows the importance of detailed facies analysis with high-resolution sequence stratigraphic control using outcrops for documenting sedimentary processes of shallow marine shoreline systems.
机译:已经假设沉积相与序列地层位置相关。此外,海岸线系统由混合过程建造,包括河流,风暴,公平天气波和潮汐。解决海岸线沉积的复杂性需要详细的定量相分析,特别注意异质继承。在这项研究中,测量了在圣胡安盆地西北部的130公里长的130公里长的露天带中的71个部分。使用沉积物和图标解释来确定五个主要相协会,包括离岸货架,非红细胞海岸线砂岩,Δ,沿海Bayline和河流。每个相结合还包括从属相位。沉积相形解释被放置在高分辨率序列地层框架中,该框架允许重新构建个人假设集的古地区,这证明了相关联和沉积过程的时间和空间演化。结果表明,盖洛普是一种混合过程控制的沉积系统,具有公平天气和风暴波动的优势,河流影响和潮汐效应,与之前的公平天气波导环境的先前解释对比。沉积过程和所得相形的序列地位响应于相对海平改变而变化 - 特定的相块仅在某些系统束中沉积。在本研究中还记录了非红细船坞和波导倍过的非红细船坞和主导Δ之间的区别和过渡。非Deltaic Shorefaces的特征在于均匀的砂岩,具有广泛的生物风相指标和迷路的缺失。波浪主导的Deltas受到河流影响并包含Prodelta相片。本研究表明,使用露头对浅海洋海岸线系统的沉积过程进行高分辨率序列地层控制的详细相分析的重要性。

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