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Dynamically and Observationally Constrained Estimates of Water-Mass Distributions and Ages in the Global Ocean

机译:全球海洋中水量分布和年龄的动态和观测约束估计

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摘要

A data-constrained ocean circulation model is used to characterize the distribution of water masses and their ages in the global ocean. The model is constrained by the time-averaged temperature, salinity, and radiocarbon distributions in the ocean, as well as independent estimates of the mean sea surface height and sea surface heat and freshwater fluxes. The data-constrained model suggests that the interior ocean is ventilated primarily by water masses forming in the Southern Ocean. Southern Ocean waters, including those waters forming in the Antarctic and subantarctic regions, make up about 55% of the interior ocean volume and an even larger percentage of the deep-ocean volume. In the deep North Pacific, the ratio of Southern Ocean to North Atlantic waters is almost 3:1. Approximately 65 % of interior ocean waters make first contact with the atmosphere in the Southern Ocean, further emphasizing the central role played by the Southern Ocean in the regulation of the earth's climate. Results of the age analysis suggest that the mean ventilation age of deep waters is greater than 1000 yr throughout most of the Indian and Pacific Oceans, reaching a maximum of about 1400-1500 yr in the middepth North Pacific. The mean time for deep waters to be reexposed at the surface also reaches a maximum of about 1400-1500 yr in the deep North Pacific. Together these findings suggest that the deep North Pacific can be characterized as a "holding pen" of stagnant and recirculating waters.
机译:使用数据约束的海洋环流模型来表征全球海洋中水团的分布及其年龄。该模型受到海洋中时间平均温度,盐度和放射性碳分布以及平均海面高度,海面热量和淡水通量的独立估计的约束。数据受限的模型表明,内部海洋的通风主要是由南部海洋中形成的水​​团引起的。南部海洋水域,包括南极和亚南极地区形成的水域,约占内部海洋体积的55%,甚至占深海体积的更大比例。在北太平洋深处,南大洋与北大西洋水域的比例几乎为3:1。大约65%的内部海洋水域首次与南大洋的大气层接触,进一步强调了南大洋在调节地球气候中所起的核心作用。年龄分析结果表明,在印度洋和太平洋的大部分地区,深水的平均通风年龄都大于1000年,北太平洋中深度的最大通风年龄约为1400-1500年。在北太平洋深部,深水重新暴露在地表的平均时间也达到了大约1400-1500年的最大值。这些发现共同表明,深北太平洋可以被描述为停滞和循环水的“握笔”。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第12期|p.2381-2401|共21页
  • 作者

    Tim DeVries; Francois Primeau;

  • 作者单位

    Department of Atmospheric and Oceanic Sciences, University of California, Los Angeles, Los Angeles, California;

    Department of Earth System Science, University of California, Irvine, Irvine, California;

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  • 正文语种 eng
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