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Glacial changes in tropical climate amplified by the Indian Ocean

机译:印度洋放大的热带气候的冰川变化

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The mechanisms driving glacial-interglacial changes in the climate of the Indo-Pacific warm pool are poorly understood. Here, we address this question by combining paleoclimate proxies with model simulations of the Last Glacial Maximum climate. We find evidence of two mechanisms explaining key patterns of ocean cooling and rainfall change interpreted from proxy data. Exposure of the Sahul shelf excites a positive ocean-atmosphere feedback involving a stronger surface temperature gradient along the equatorial Indian Ocean and a weaker Walker circulation—a response explaining the drier/wetter dipole across the basin. Northern Hemisphere cooling by ice sheet albedo drives a monsoonal retreat across Africa and the Arabian Peninsula—a response that triggers a weakening of the Indian monsoon via cooling of the Arabian Sea and associated reductions in moisture supply. These results demonstrate the importance of air-sea interactions in the Indian Ocean, amplifying externally forced climate changes over a large part of the tropics.
机译:人们对印度-太平洋暖池气候中冰河间变化的机制知之甚少。在这里,我们通过将古气候代理与最后一次冰河最大气候的模型模拟相结合来解决这个问题。我们发现有两种机制可以解释由代理数据解释的海洋降温和降雨变化的关键模式的两种机制。萨胡尔陆架的暴露激发了积极的海洋-大气反馈,包括沿赤道印度洋的地表温度梯度更强和沃克环流更弱-这一反应解释了整个盆地的干/偶极子。北半球由于冰盖反照率的冷却而驱使整个非洲和阿拉伯半岛的季风退缩,这种反应通过阿拉伯海的降温和相应的水分供应减少而触发了印度季风的减弱。这些结果证明了印度洋海海互动的重要性,这放大了热带大部分地区的外部强迫气候变化。

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