沉积微浮游生物的分布是由海洋学上相连的区域形成的

P. Nooteboom, P. Bijl, C. Kehl, E. van Sebille, M. Ziegler, A. S. von der Heydt, H. Dijkstra
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引用次数: 3

摘要

摘要海洋沉积物中的微型浮游生物通过水柱下降,代表了它们起源的海洋表面环境。因此,沉积的微型浮游生物被用作过去和现在海面海洋学状况的档案。然而,这些颗粒在下沉的过程中会被汹涌的洋流平流。到目前为止,尚不清楚这种颗粒平流在多大程度上影响了沉积物中浮游生物的组成。本文在强涡旋全球海洋模型中对下沉颗粒进行了全球模拟,并根据颗粒表面起源位置定义了海底省份。我们发现这些省在全球沉积微浮游生物组合数据集中都可以检测到,这表明省对表层浮游生物沉积残留物的组成有影响。这些省份解释了浮游生物的组成,如海洋表面环境。连通省份对用于古海洋学重建的微浮游生物沉积物样本数据集的最佳空间范围以及全球数据集沉积物样本的最佳空间平均具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sedimentary microplankton distributions are shaped by oceanographically connected areas
Abstract. Having descended through the water column, microplankton in ocean sediments are representative for the ocean surface environment, where they originated from. Sedimentary microplankton is therefore used as an archive of past and present surface oceanographic conditions. However, these particles are advected by turbulent ocean currents during their sinking journey. So far, it is unknown to what extent this particle advection shapes the microplankton composition in sediments. Here we use global simulations of sinking particles in a strongly eddying global ocean model, and define ocean bottom provinces based on the particle surface origin locations. We find that these provinces can be detected in global datasets of sedimentary microplankton assemblages, demonstrating the effect provincialism has on the composition of sedimentary remains of surface plankton. These provinces explain the microplankton composition, together with e.g. ocean surface environment. Connected provinces have implications on the optimal spatial extent of microplankton sediment sample datasets that are used for palaeoceanographic reconstructions, and on the optimal spatial averaging of sediment samples over global datasets.
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