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拉格朗日粒子追踪揭示北太平洋深海通道。

Deep water pathways in the North Pacific Ocean revealed by Lagrangian particle tracking.

机构信息

Atmosphere and Ocean Research Institute, The University of Tokyo, Chiba, Japan.

出版信息

Sci Rep. 2022 Apr 22;12(1):6238. doi: 10.1038/s41598-022-10080-8.

Abstract

Lagrangian particle tracking experiments are conducted to investigate the pathways of deep water in the North Pacific Ocean. The flow field is taken from a state-of-the-art deep circulation simulation. An unprecedented number of particles are tracked to quantify the volume transport and residence time. Half of the North Pacific deep water returns to the Southern Ocean, and its principal pathway is along the western boundary current in the Southwest Pacific Basin in the deep layer. About 30% is exported to the Indian Ocean after upwelling to the shallow layer in the western North Pacific Ocean. The rest is transported to the Arctic Ocean through the Bering Strait or evaporates within the Pacific Ocean. Upwelling of deep water is confined in the western North Pacific Ocean owing to the strong vertical mixing. The mean residence time of deep water in the North Pacific Ocean is estimated to be several hundred years, which is consistent with the observed radiocarbon distribution.

摘要

拉格朗日粒子轨迹实验被用来研究北太平洋深海水的路径。流场取自先进的深海环流模拟。追踪了空前数量的粒子以量化体积输运和停留时间。北太平洋深部一半的水返回南大洋,其主要路径是沿着西南太平洋盆地区域的西部边界流在深层。大约 30%的水在西北太平洋浅层上涌后输出到印度洋。其余的通过白令海峡输送到北冰洋,或在太平洋内蒸发。由于强烈的垂直混合,深层水的上涌局限于西北太平洋。北太平洋深层水的平均停留时间估计为数百年,这与观测到的放射性碳分布一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c699/9033868/d2b9bee14f74/41598_2022_10080_Fig1_HTML.jpg

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