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Interhemispheric symmetry of the tropical African rainbelt over the past 23,000 years

机译:过去23,000年非洲热带雨带的半球对称性

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The distribution of rainfall in tropical Africa is controlled by the African rainbelt, which oscillates on a seasonal basis. The rainbelt has varied on centennial to millennial timescales along with changes in Northern Hemisphere high-latitude climate, the Atlantic meridional overturning circulation and low-latitude insolation over the past glacial-interglacial cycle. However, the overall dynamics of the African rainbelt remain poorly constrained and are not always consistent with a latitudinal migration, as has been proposed for other regions. Here we use terrestrially derived organic and sedimentary markers from marine sediment cores to reconstruct the distribution of vegetation, and hence rainfall, in tropical Africa during extreme climate states over the past 23,000 years. Our data indicate that rather than migrating latitudinally, the rainbelt contracted and expanded symmetrically in both hemispheres in response to changes in climate. During the Last Glacial Maximum and Heinrich Stadial 1, the rainbelt contracted relative to the late Holocene, which we attribute to a latitudinal compression of atmospheric circulation associated with lower global mean temperatures. Conversely, during the mid-Holocene climatic optimum, the rainbelt expanded across tropical Africa. In light of our findings, it is not clear whether the tropical rainbelt has migrated latitudinally on a global scale, as has been suggested.
机译:非洲热带地区的降雨分布受非洲雨带的控制,该雨带是季节性波动的。雨带在百年至千禧年的时间尺度上有所变化,同时在过去的冰川-冰川周期中,北半球的高纬度气候变化,大西洋的子午线翻转环流和低纬度的日照。但是,非洲雨林带的总体动力仍然受到限制,并且并不总是像其他地区所建议的那样与纬度迁徙相一致。在这里,我们使用来自海洋沉积物核心的地面衍生有机物和沉积物标记物来重建过去23,000年极端气候状态下热带非洲的植被分布,从而重建降雨。我们的数据表明,响应气候变化,雨带不是在纬向迁移,而是在两个半球对称地收缩和膨胀。在最后一次冰川最大期和海因里希恒星1期间,雨带相对于全新世晚期收缩,这归因于大气环流的纬度压缩与较低的全球平均温度有关。相反,在全新世中期气候最佳期间,雨带扩展到整个非洲热带地区。根据我们的发现,目前尚不清楚热带雨带是否已像建议的那样在全球范围内横向迁移。

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