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Decadal variability in the Arctic Ocean: Greenland-Iceland-Norwegian Seas ice-ocean-atmosphere climate system.

机译:北冰洋的年代际变率:格陵兰-冰岛-挪威海冰海-大气气候系统。

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摘要

This study investigates the decadal variability of the Arctic Ocean—Greenland, Iceland, Norwegian Seas (GIN Sea) system and possible mechanisms driving variability. The theoretical foundation of this work is the theory of Proshutinsky & Johnson [1997] that two major climate states of the Arctic—Anticyclonic Circulation Regime (ACCR) and Cyclonic Circulation Regime (CCR)—are driven by variations in the freshwater contents of the Arctic Ocean and the GIN Sea.; It is hypothesized that the Arctic Ocean and the GIN Sea form an auto-oscillatory ice-ocean-atmosphere climate system with a quasi-decadal period of interannual variability. The system is characterized by two stages: (1) cold Arctic (ACCR)—warm GIN Sea with weak interaction between the basins; (2) warm Arctic (CCR)—cold GIN Sea with intense interaction between the basins. Surface air temperature and dynamic height gradients between the basins drive the auto-oscillations. This study investigates interactions between the Arctic Ocean and the GIN Sea.; To test the hypothesis, a simple model of the Arctic Ocean and Greenland Sea has been developed. The Arctic shelf processes have been parameterized in a box model coupled with an Arctic Ocean module. Both the Arctic Ocean and Greenland Sea modules are coupled with a thermodynamic ice model and atmospheric models. Several model experiments have been conducted to adjust the model and to reproduce the auto-oscillatory behavior of the climate system.; One of the major results of this work is the simulation of auto-oscillatory behavior of the Arctic Ocean—GIN Sea climate system. Periodical solutions obtained with seasonally varying forcing for scenarios with high and low interaction between the regions reproduce major anomalies in the ocean thermohaline structure, sea ice volume, and fresh water fluxes attributed to ACCR and CCR regimes. According to the simulation results, the characteristic time scale of the Arctic Ocean—GIN Sea system variability reproduced in the model is about 10–15 years. This outcome is consistent with theory of Proshutinsky and Johnson [1997] and shows that the Arctic Ocean—GIN Sea can be viewed as a unique auto-oscillating system.
机译:本研究调查了北冰洋格陵兰,冰岛,挪威海(GIN海)系统的年代际变率和驱动该变率的可能机制。这项工作的理论基础是 Proshutinsky&Johnson [1997]的理论,该理论认为北极的两个主要气候状态是反气旋循环制度(ACCR)和气旋循环制度(CCR)。在北冰洋和GIN海的淡水中。假设北冰洋和GIN海形成了一个自振荡的冰海洋大气系统,其准年际年际变化。该系统具有两个阶段的特征:(1)冷北极(ACCR)-温暖的GIN海,盆地之间相互作用弱; (2)暖北极(CCR)-冷GIN海,盆地之间相互作用强烈。盆地之间的地表温度和动态高度梯度驱动着自激振荡。这项研究调查了北冰洋和GIN海之间的相互作用。为了检验该假设,开发了北冰洋和格陵兰海的简单模型。北极货架过程已在与北极海洋模块耦合的盒模型中进行了参数化。北冰洋和格陵兰海模块都与热力学冰模型和大气模型结合在一起。已经进行了几次模型实验,以调整模型并重现气候系统的自激振荡行为。这项工作的主要成果之一是对北冰洋-GIN海洋气候系统的自激振荡行为的模拟。在区域之间交互作用高和低的情况下,通过季节性变化强迫获得的周期解再现了海洋热盐结构,海冰量以及归因于ACCR和CCR机制的淡水通量的主要异常。根据模拟结果,该模型再现的北冰洋-GIN海系统变异的特征时间尺度约为10-15年。这一结果与 Proshutinsky and Johnson [1997]的理论是一致的,并且表明北冰洋GIN海可以看作是一个独特的自动振荡系统。

著录项

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Physical Oceanography.; Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.4838
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋物理学;
  • 关键词

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