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南极半岛以西的陆架-海洋交换与水文特征:综述

Shelf-ocean exchange and hydrography west of the Antarctic Peninsula: a review.

作者信息

Moffat C, Meredith M

机构信息

School of Marine Science and Policy, University of Delaware, Newark, DE 19716, USA

British Antarctic Survey High Cross, Madingley Road, Cambridge CB3 0ET, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2018 Jun 28;376(2122). doi: 10.1098/rsta.2017.0164.

Abstract

The West Antarctic Peninsula (WAP) is a highly productive marine ecosystem where extended periods of change have been observed in the form of glacier retreat, reduction of sea-ice cover and shifts in marine populations, among others. The physical environment on the shelf is known to be strongly influenced by the Antarctic Circumpolar Current flowing along the shelf slope and carrying warm, nutrient-rich water, by cold waters flooding into the northern Bransfield Strait from the Weddell Sea, by an extensive network of glaciers and ice shelves, and by strong seasonal to inter-annual variability in sea-ice formation and air-sea interactions, with significant modulation by climate modes like El Niño-Southern Oscillation and the Southern Annular Mode. However, significant gaps have remained in understanding the exchange processes between the open ocean and the shelf, the pathways and fate of oceanic water intrusions, the shelf heat and salt budgets, and the long-term evolution of the shelf properties and circulation. Here, we review how recent advances in long-term monitoring programmes, process studies and newly developed numerical models have helped bridge these gaps and set future research challenges for the WAP system.This article is part of the theme issue 'The marine system of the West Antarctic Peninsula: status and strategy for progress in a region of rapid change'.

摘要

南极半岛西部(WAP)是一个高产的海洋生态系统,在那里可以观察到长期的变化,形式包括冰川消退、海冰覆盖减少以及海洋生物种群的转移等。已知陆架上的物理环境受到沿着陆架坡流动并携带温暖、营养丰富海水的南极绕极流的强烈影响,受到从威德尔海涌入布兰斯菲尔德海峡北部的冷水的影响,受到广泛的冰川和冰架网络的影响,还受到海冰形成和海气相互作用中强烈的季节到年际变化的影响,同时受到诸如厄尔尼诺 - 南方涛动和南极环状模等气候模态的显著调制。然而,在理解开阔海洋与陆架之间的交换过程、海水入侵的路径和归宿、陆架热量和盐度收支以及陆架特性和环流的长期演变方面,仍然存在重大差距。在此,我们回顾长期监测计划、过程研究和新开发的数值模型方面的最新进展如何有助于弥合这些差距,并为WAP系统设定未来的研究挑战。本文是主题特刊“南极半岛西部的海洋系统:快速变化区域的现状与进展战略”的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e773/5954465/a03f8a994be9/rsta20170164-g1.jpg

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