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首页> 外文期刊>Journal of Climate >Seasonal Dependence of Coupling between Storm Tracks and Sea Surface Temperature in the Southern Hemisphere Midlatitudes: A Statistical Assessment
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Seasonal Dependence of Coupling between Storm Tracks and Sea Surface Temperature in the Southern Hemisphere Midlatitudes: A Statistical Assessment

机译:风暴轨道与海面温度耦合耦合的季节性依赖性:统计评估

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摘要

Two-way coupling between sea surface temperature (SST) variations in the midlatitude southern oceans and changes of synoptic-scale (2-8 day) eddy activities in the lower and upper troposphere throughout the year is investigated based on lagged maximum covariance analysis using reanalysis datasets from 1951 to 2000. Results show a strong seasonal dependence of the coupling, as characterized by the most prominent one in austral midsummer (January). On one hand, SST variations in austral late spring (primarily October) are likely to influence storm tracks in the following January. That is, significant warm SST anomalies in the western midlatitude areas of South Atlantic and south Indian Ocean could result in the systematic strengthening of the low-level and upper-level eddy activities, which is presumably attributed to the coherent intensification of the SST front and the lower-tropospheric baroclinicity. Particularly, interannual variability (a spectral peak at 4 yr) of SST in the western midlatitude South Atlantic in October could play a predominant role in driving the corresponding variability of the Southern Hemisphere storm tracks three months later. The timing of the discernible response of storm tracks is also discussed based on the preliminary results of sensitivity experiments. On the other hand, the strengthened eddy activities in January continue to induce the dipolelike patterns of SST anomalies in the midlatitude southern oceans. Those SST response patterns are, to the first order, determined by changes of the net surface heat flux. The anomalous Ekman advections in part driven by the storm-track changes also contribute to SST anomalies in the southern subtropical South Atlantic and the western midlatitude South Pacific.
机译:海面温度(SST)之间的双向耦合在中间南海(SST)中的中间海洋和概要(2-8天)涡流变化的变化,基于使用Reanysics的滞后最大协方差分析来研究较低和上层对流层的涡流涡流活动1951年至2000年的数据集。结果表明耦合的强烈季节性依赖,如澳大利亚仲夏(1月)中最突出的速度。一方面,南春天(主要十月)的SST变化可能会在以下一月中影响风暴轨道。也就是说,南大西洋和南印度洋西部地区的显着温暖的SST异常可能导致系统强化低水平和上层涡流活动,这可能归因于SST前沿的连贯强化和较低的对流性的双层冠状动脉。特别是10月西中西部南大西洋中SST的持续变异性(4 YR的光谱峰值)可能在三​​个月后驾驶南半球风暴轨道的相应变异方面发挥主要作用。还基于灵敏度实验的初步结果讨论了风暴轨道的可辨别响应的时间。另一方面,1月份加强的涡流活动继续诱导中部海洋中部海洋中SST异常的偶极纤维化模式。通过净表面热通量的变化来确定那些SST响应模式。由风暴轨道变化驱动的异常ekman平步发展也有助于南部亚热带南大西洋和西部地区南太平洋西部的SST异常。

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  • 来源
    《Journal of Climate》 |2018年第10期|共20页
  • 作者单位

    Ocean Univ China Cooperat &

    Innovat Ctr Marine Sci &

    Technol Qingd Phys Oceanog Lab Qingdao Peoples R China;

    Ocean Univ China Cooperat &

    Innovat Ctr Marine Sci &

    Technol Qingd Phys Oceanog Lab Qingdao Peoples R China;

    Ocean Univ China Cooperat &

    Innovat Ctr Marine Sci &

    Technol Qingd Phys Oceanog Lab Qingdao Peoples R China;

    Ocean Univ China Cooperat &

    Innovat Ctr Marine Sci &

    Technol Qingd Phys Oceanog Lab Qingdao Peoples R China;

    Zhejiang Meteorol Bur Zhejiang Climate Ctr Hangzhou Zhejiang Peoples R China;

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

    Southern Ocean; Fronts; Atmosphere-ocean interaction; Storm tracks; Interannual variability;

    机译:南海;前面;氛围 - 海洋互动;风暴轨道;年平变化;

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