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Alleviating tropical Atlantic sector biases in the Kiel climate model by enhancing horizontal and vertical atmosphere model resolution: climatology and interannual variability

机译:通过提高水平和垂直大气模型的分辨率来缓解基尔气候模型中的热带大西洋部门偏差:气候学和年际变化

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摘要

We investigate the quality of simulating tropical Atlantic (TA) sector climatology and interannual variability in integrations of the Kiel climate model (KCM) with varying atmosphere model resolution. The ocean model resolution is kept fixed. A reasonable simulation of TA sector annual-mean climate, seasonal cycle and interannual variability can only be achieved at sufficiently high horizontal and vertical atmospheric resolution. Two major reasons for the improvements are identified. First, the western equatorial Atlantic westerly surface wind bias in spring can be largely eliminated, which is explained by a better representation of meridional and especially vertical zonal momentum transport. The enhanced atmospheric circulation along the equator in turn greatly improves the thermal structure of the upper equatorial Atlantic with much reduced warm sea surface temperature (SST) biases. Second, the coastline in the southeastern TA and steep orography are better resolved at high resolution, which improves wind structure and in turn reduces warm SST biases in the Benguela upwelling region. The strongly diminished wind and SST biases at high atmosphere model resolution allow for a more realistic latitudinal position of the intertropical convergence zone. Resulting stronger cross-equatorial winds, in conjunction with a shallower thermocline, enable a rapid cold tongue development in the eastern TA in boreal spring. This enables simulation of realistic interannual SST variability and its seasonal phase locking in the KCM, which primarily is the result of a stronger thermocline feedback. Our findings suggest that enhanced atmospheric resolution, both vertical and horizontal, could be a key to achieving more realistic simulation of TA climatology and interannual variability in climate models.
机译:我们调查了模拟热带大西洋(TA)部门气候的质量以及基尔气候模型(KCM)与不同大气模型分辨率的积分的年际变化。海洋模型分辨率保持固定。只有在足够高的水平和垂直大气分辨率下,才能实现对TA行业年平均气候,季节周期和年际变化的合理模拟。确定了改进的两个主要原因。首先,春季的西赤道大西洋西风表面偏风可以基本消除,这可以通过更好地表示子午线,尤其是垂直带状动量传输来解释。沿着赤道的增强的大气环流反过来大大改善了赤道上层大西洋的热结构,同时大大降低了暖海表面温度(SST)偏差。其次,东南部的海岸线和陡峭的地形在高分辨率下得到了较好的解析,这改善了风的结构,从而减少了本格拉上升流地区的暖海温偏倚。在高大气层模型分辨率下,风和SST偏差大大减小,从而使热带辐合带的纬度位置更加现实。由此产生的更强的横贯赤道风,再加上较浅的温跃层,使北方春季东部TA的舌头迅速发展。这可以模拟现实的年际SST变异性及其在KCM中的季节相位锁定,这主要是更强的温跃层反馈的结果。我们的发现表明,垂直和水平大气分辨率的提高可能是实现更逼真的模拟TA气候和气候模型年际变化的关键。

著录项

  • 来源
    《Climate dynamics》 |2018年第8期|2605-2635|共31页
  • 作者单位

    GEOMAR Helmholtz Ctr Ocean Res Kiel, Duesternbrooker Weg 20, D-24105 Kiel, Germany;

    GEOMAR Helmholtz Ctr Ocean Res Kiel, Duesternbrooker Weg 20, D-24105 Kiel, Germany;

    GEOMAR Helmholtz Ctr Ocean Res Kiel, Duesternbrooker Weg 20, D-24105 Kiel, Germany;

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

    Tropical Atlantic; SST bias; Benguela; Climate modelling; Resolution; GCM biases;

    机译:热带大西洋;海表温度偏差;孟加拉国;气候模拟;分辨率;GCM偏差;
  • 入库时间 2022-08-18 03:31:38

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