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The sandy inner shelf as a repository for muddy sediment: an example from Northern California

机译:沙质内架作为泥泞沉积物的储存库:北加州的一个例子

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To understand the sedimentary history of a siliciclastic, tectonically active inner-shelf environment, 50 vibracores were collected in water depths ranging from 20 to 55m on the Eel margin, Northern California. Sediments exhibit changes in grain size along- and across-shelf, as well as vertically. The mean grain size of the surface sand fraction is 2.2-3.6phi(1) (217-82.5 mum), with 7-40% of the sediment finer than 40 (64 pm). The along-shelf distribution of sand is controlled predominantly by proximity to the sediment source and by the prevailing oceanic conditions (e.g., waves and currents). Fine sand dominates within similar to 10 km of the Eel River mouth, which is consistent with sediment settling velocities out of the Eel River plume. Coarser sediment is found farther ( > 10 km) north of the Eel River mouth, and may have a source other than the modern Eel River. Cores tend to demonstrate upward fining (except cores collected at similar to 30 m) and other vertical grain-size variations, which preserve the record of floods on the Eel margin. Muddy layers, which are assumed to record large floods, are found interbedded with sand. Two types of muddy layers are observed. "Distinct" mud layers have > 70% mud and are identifiable through visual observation and a decrease in bulk density. "Diffuse" mud layers contain only 5-15% mud due to reworking caused by wave activity during or after deposition. Diffuse mud layers are not visually obvious, and poor sorting increases their bulk density. Recent flood layers have detectable Pb-210 and Cs-137, and the deepest detectable Cs-137 is 120 cm below the surface. Assuming that the mud layers result from major floods (e.g., 1964), and using Pb-210 and 137Cs radioisotopes to establish chronological control, the accumulation rate of sand on the inner shelf since 1964 ranges from 1.3 to 3.3 cm/yr. Approximately 6-13% of the fine-grained sediment discharged by the Eel River over the past 36 yr is accumulating interspersed with the inner-shelf sand. An additional similar to I % of the fine-grained sediment discharged since 1964 may be accounted for as distinct flood layers (containing > 70% mud) interbedded with the inner-shelf sand. In all, 40-50% of the sand discharged by the Eel River, both in suspension and as bedload, can be accounted for on the inner shelf. An additional 2-5% of the sand accumulates in the mid-shelf mud deposit. Transport farther seaward (e.g., Eel canyon), landward (beaches or Humboldt Bay), or along shelf should account for the remainder of the sand. Thus, the inner-shelf region plays a significant role in controlling the fate of sand and mud supplied from terrestrial sources. (C) 2003 Elsevier Ltd. All rights reserved. [References: 40]
机译:为了解硅质碎屑,构造活动的内层架环境的沉积历史,在北加利福尼亚鳗缘的20至55m的水深范围内收集了50个振动核。沉积物沿架上和跨架以及垂直方向的粒径变化。表面沙粒的平均粒度为2.2-3.6phi(1)(217-82.5微米),其中7-40%的沉积物比40(64 pm)细。沿沙架的分布主要是通过靠近沉积物源和主要的海洋条件(例如海浪和洋流)来控制的。在距鳗鱼河口约10公里的范围内,细沙占主导地位,这与鳗鱼河羽流中的沉积物沉降速度一致。在Eel River河口以北(> 10 km)处发现了较粗的沉积物,它可能是现代Eel River以外的来源。岩心倾向于表现出向上的细化作用(除了在30 m处收集的岩心)和其他垂直粒度变化,从而保留了鳗el边缘洪水的记录。泥土层被认为是记录了大洪水的地方,被发现夹杂在沙子中。观察到两种类型的泥层。 “不同的”泥浆层的泥浆含量> 70%,可通过目视观察和堆积密度的降低来识别。由于沉积过程中或沉积后的波活动造成的返工,“扩散”泥浆层仅包含5-15%的泥浆。分散的泥层在视觉上不明显,并且分类不当会增加其堆积密度。最近的洪水层具有可检测到的Pb-210和Cs-137,最深的可检测到的Cs-137在地表以下120厘米处。假定泥浆层是由大洪水造成的(例如1964年),并使用Pb-210和137Cs放射性同位素建立年代学控制,则自1964年以来内层架子上的沙子积聚速率在1.3至3.3厘米/年之间。在过去的36年中,鳗鱼河排放的细粒沉积物中约有6-13%的沉积物散布在内部的沙层中。自1964年以来排放的细颗粒沉积物中,约有1%可能与内层砂层夹杂的不同洪水层(含70%以上的泥浆)有关。总体上,鳗鱼河排放的沙子中的40-50%(无论是悬浮的还是作为床载的)都可以在内层架上解释。额外的2-5%的沙子积聚在架子中部的泥沙中。向更远的海域(例如,鳗鱼峡谷),向内的域(海滩或洪堡湾)或沿架子的运输应考虑剩余的沙子。因此,内层架区域在控制地面来源提供的沙尘的命运方面起着重要作用。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:40]

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