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Drying of Indian subcontinent by rapid Indian Ocean warming and a weakening land-sea thermal gradient

机译:印度洋快速变暖和陆海热梯度减弱导致印度次大陆干燥

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There are large uncertainties looming over the status and fate of the South Asian summer monsoon, with several studies debating whether the monsoon is weakening or strengthening in a changing climate. Our analysis using multiple observed datasets demonstrates a significant weakening trend in summer rainfall during 1901–2012 over the central-east and northern regions of India, along the Ganges-Brahmaputra-Meghna basins and the Himalayan foothills, where agriculture is still largely rain-fed. Earlier studies have suggested an increase in moisture availability and land-sea thermal gradient in the tropics due to anthropogenic warming, favouring an increase in tropical rainfall. Here we show that the land-sea thermal gradient over South Asia has been decreasing, due to rapid warming in the Indian Ocean and a relatively subdued warming over the subcontinent. Using long-term observations and coupled model experiments, we provide compelling evidence that the enhanced Indian Ocean warming potentially weakens the land-sea thermal contrast, dampens the summer monsoon Hadley circulation, and thereby reduces the rainfall over parts of South Asia.
机译:南亚夏季风的状态和命运笼罩着巨大的不确定性,多项研究争论了季风是否在气候变化中减弱或增强。我们使用多个观察到的数据集进行的分析表明,在印度中东部和北部地区,沿恒河-布拉马普特拉-梅格纳盆地和喜马拉雅山麓地区(农业仍主要依靠雨水灌溉)的1901-2012年期间,夏季降水明显减弱。 。较早的研究表明,由于人为变暖,热带地区的水分供应和陆海温度梯度增加,这有利于热带降雨的增加。在这里,我们表明,由于印度洋的快速变暖和次大陆的相对较弱的变暖,南亚的陆海热梯度一直在下降。通过长期的观察和耦合的模型实验,我们提供了令人信服的证据,表明印度洋变暖的加剧可能削弱陆海热反差,减弱夏季季风Hadley的环流,从而减少南亚部分地区的降雨。

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