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Fine-grained sedimentation on the Chenier Plain Coast and inner continental shelf, northern Gulf of Mexico

机译:墨西哥湾北部Chenier平原海岸和内陆大陆架上的细粒沉积

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摘要

This thesis examines the evolution of a mud-dominated coastal sedimentary system on multiple time scales. Fine-grained systems exhibit different properties and behavior from sandy coasts, and have received relatively little research attention to date. Evidence is presented for shoreline accretion under energetic conditions associated with storms and winter cold fronts. The identification of energetic events as agents of coastal accretion stands in contrast to the traditional assumption that low-energy conditions are required for deposition of fine-grained sediment. Mudflat accretion is proposed to depend upon the presence of an unconsolidated mud sea floor immediately offshore, proximity to a fluvial sediment source, onshore winds, which generate waves that resuspend sediment and advect it shoreward, and a low tidal range. This study constrains the present influence of the Atchafalaya River on stratigraphic evolution of the inner continental shelf in western Louisiana. Sedimentary and acoustic data are used to identify the western limit of the distal Atchafalaya prodelta and to estimate the proportion of Atchafalaya River sediment that accumulates on the inner shelf seaward of Louisiana's chenier plain coast. The results demonstrate a link between sedimentary facies distribution on the inner shelf and patterns of accretion and shoreline retreat on the chenier plain coast.
机译:本文研究了一个以泥质为主的沿海沉积系统在多个时间尺度上的演化。细粒系统表现出与沙质海岸不同的特性和行为,并且迄今为止受到的研究较少。提出了与风暴和冬季冷锋相关的高能条件下海岸线积聚的证据。将高能事件识别为沿海积聚的动因与传统的假设相反,传统的假设是低能量条件是细粒沉积物沉积的必要条件。提出的泥滩增生取决于离岸的未固结泥海床,靠近河流沉积物源的近岸风,陆上风,陆上风会产生将沉积物重悬并向岸平移的波浪,以及低潮汐范围。这项研究限制了Atchafalaya河目前对路易斯安那州西部内陆大陆架地层演化的影响。沉积和声学数据可用来识别Atchafalaya三角洲远端的西界,并估算在路易斯安那州chenier平原海岸的内陆架海面上堆积的Atchafalaya河沉积物的比例。结果表明,内谢尔盆地内的沉积相分布与谢尼尔平原海岸的吸积和海岸线退缩模式之间存在联系。

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    Draut Amy Elizabeth;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 eng
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