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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >On sediment accumulation rates and stratigraphic completeness: Lessons from Holocene ocean margins
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On sediment accumulation rates and stratigraphic completeness: Lessons from Holocene ocean margins

机译:沉积物沉积速率和地层完整性的研究:全新世海洋边缘的教训

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Stratigraphic completeness is a fundamental consideration when deciphering the mass accumulation history of sediments and the geologic record of earth and ocean processes. In this study, stratigraphic completeness was examined in the context of late Holocene sedimentary successions using published sediment accumulation rates for five ocean margin systems (Amazon shelf, Hudson estuary, northern California shelf, Mid-Atlantic slope, Santa Monica Bay). Plots of mass accumulation rate versus time span of averaging were used to determine how rates scale with measurement period, and to estimate levels of stratigraphic completeness for comparison within and among margin systems. Statistically significant inverse correlations between accumulation rate and time span of averaging are indicated for all but one of these systems-most of the sedimentary records examined are stratigraphically incomplete. At the 10(3)-yr level of resolution, completeness is 20-48% for strongly tidal estuarine (Hudson estuary) and deltaic shelf (Amazon shelf) sites, 51-91% for accretionary shelves (northern California shelf) and slopes (Mid-Atlantic slope), and 85-100% for a sediment-starved slope (Santa Monica bay). Mass accumulation rates converge to a relatively narrow range (0.01-0.1 g cm(-2) yr(-1)) at the 10(4)-yr level of resolution, consistent with the notion that there are universal controls on sediment accumulation rate, i.e., rate of sea-level rise and sediment supply. Among sites on the Amazon and northern California shelves, within-system completeness varies by similar to 10-20% on account of site-specific sedimentary processes that preferentially trap or disperse suspended sediment. Overall, stratigraphic completeness increases with water depth shelf-to-slope, yet depth is not a robust predictor of completeness in general owing to differences in strata-forming processes among shallow-marine environments. Significantly, completeness varies inversely with instantaneous deposition rate as the most sediment-rich systems tend to exhibit the most incomplete sedimentary records. The findings of this study emphasize the importance of considering time span and fidelity when interpreting the accumulation history of modern and Holocene sedimentary strata. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在解释沉积物的质量积累历史以及地球和海洋过程的地质记录时,地层完整性是一个基本考虑因素。在这项研究中,使用已公布的五个海洋边缘系统(亚马逊陆架,哈德逊河口,北加利福尼亚陆架,中大西洋斜坡,圣塔莫尼卡湾)的沉积物累积速率,在晚全新世沉积演替的背景下检查了地层完整性。质量累积速率与平均时间跨度的关系图用于确定速率如何随测量周期缩放,并估计地层完整性水平,以便在保证金系统内部和系统之间进行比较。除其中一个系统外,所有其他系统均显示了累积速率与平均时间跨度之间的统计上显着的反相关关系,其中大多数沉积记录在地层上都不完整。在10(3)年分辨率下,强潮河口(哈德逊河口)和三角洲陆架(亚马逊陆架)站点的完整性为20-48%,增生陆架(北加利福尼亚陆架)和斜坡的完整性为51-91%(大西洋中部斜坡)和沉积物匮乏斜坡(圣莫尼卡湾)的比率为85-100%。在分辨率为10(4)年的水平上,质量积累速率收敛到相对较窄的范围(0.01-0.1 g cm(-2)yr(-1)),这与对沉积物积累速率有普遍控制的观点一致即海平面上升速度和沉积物供应。在亚马逊和北加利福尼亚架子的站点之间,由于特定于站点的沉积过程优先捕获或分散悬浮的沉积物,因此系统内完整性的变化接近10-20%。总体而言,地层完整性随着水深的升高而增加,但由于浅海环境之间地层形成过程的差异,深度通常不能作为完整性的可靠预测指标。值得注意的是,完整性的变化与瞬时沉积速率成反比,因为沉积物最丰富的系统往往表现出最不完整的沉积记录。这项研究的结果强调了在解释现代和全新世沉积地层的沉积历史时考虑时间跨度和保真度的重要性。 (c)2006 Elsevier Ltd.保留所有权利。

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