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Impact of Mesoscale Eddy Transfer on Heat Uptake in an Eddy-Parameterizing Ocean Model

机译:Mesoscale Eddy转移对涡流参数化海洋模型热吸收的影响

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摘要

Using a set of experiments with an eddy-parameterizing ocean model, it is found that the strength of the Atlantic meridional overturning circulation (AMOC) intensifies with the decrease of the density-dependent mesoscale eddy transfer. However, the intensification is weaker than that suggested by simple scaling relationships previously applied. Perturbing the model control sea surface temperature (SST) to mimic its change in response to doubling of CO2, it is shown that the associated ocean heat uptake (OHU) increases and penetrates deeper with the decrease of the mesoscale eddy transfer. It is shown that the OHU correlates with the AMOC strength, and both these quantities are affected by the mesoscale eddy transfer. Passive tracer experiments in the ocean model provide a possible explanation for the finding in coupled-model climate simulations that the ocean heat uptake efficiency (OHUE) increases with the AMOC strength and decreases with the eddy energy generated from the mean state. It is also found that the OHU in the SST-perturbation experiments scales with the net downward advection of heat. The contribution of the AMOC to the downward heat flux is illustrated using a streamfunction in depth-temperature space.
机译:使用具有涡流参数化海洋模型的一组实验,发现大西洋经济倾覆循环(AMOC)的强度随着密度依赖性Messcore涡流的降低而增强。然而,强化比先前应用的简单缩放关系所提出的强度较弱。扰动模型控制海表面温度(SST)以模拟其响应于CO2的倍增而模拟其变化,表明相关的海洋热量摄取(OHU)随着Messcale涡流的减小而增加和渗透。结果表明,OHU与Amoc强度相关,并且这些量都受到Messcale涡流的影响。海洋模型中的被动示踪实验为耦合模型气候模拟的发现提供了可能的解释,即海洋热量吸收效率(OHUE)随着Amoc强度的增加而增加,并且随着从平均状态产生的涡电能而降低。还发现,SST-erburbation实验中的OHU尺度随着热量的净向下平流。使用深度温度空间中的流障碍说明了Amoc对向下热通量的贡献。

著录项

  • 来源
    《Journal of Climate》 |2018年第20期|共18页
  • 作者单位

    Canadian Ctr Climate Modelling &

    Anal Victoria BC Canada;

    Canadian Ctr Climate Modelling &

    Anal Victoria BC Canada;

    Univ Reading Natl Ctr Atmospher Sci Reading Berks England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 气候学;
  • 关键词

  • 入库时间 2022-08-20 08:56:44

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