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Forcing of anthropogenic aerosols on temperature trends of the sub-thermocline southern Indian Ocean

机译:人为气溶胶对印度洋南下亚热带高温温度趋势的强迫

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摘要

In the late twentieth century, the sub-thermocline waters of the southern tropical and subtropical Indian Ocean experienced a sharp cooling. This cooling has been previously attributed to an anthropogenic aerosol-induced strengthening of the global ocean conveyor, which transfers heat from the subtropical gyre latitudes toward the North Atlantic. From the mid-1990s the sub-thermocline southern Indian Ocean experienced a rapid temperature trend reversal. Here we show, using climate models from phase 5 of the Coupled Model Intercomparison Project, that the late twentieth century sub-thermocline cooling of the southern Indian Ocean was primarily driven by increasing anthropogenic aerosols and greenhouse gases. The models simulate a slow-down in the sub-thermocline cooling followed by a rapid warming towards the mid twenty-first century. The simulated evolution of the Indian Ocean temperature trend is linked with the peak in aerosols and their subsequent decline in the twenty-first century, reinforcing the hypothesis that aerosols influence ocean circulation trends.
机译:在20世纪后期,南部热带和亚热带印度洋的亚热带海域经历了急剧的降温。以前,这种降温归因于人为气溶胶引起的全球海洋输送带的加强,该输送带将热量从亚热带回旋纬度传递到北大西洋。从1990年代中期开始,南印度洋下热线经历了快速的温度趋势逆转。在这里,我们使用耦合模型比较项目的第5阶段的气候模型表明,印度洋南部20世纪后期的亚温热降温主要由人为气溶胶和温室气体的增加驱动。这些模型模拟了亚温热线冷却的减慢,然后是到二十一世纪中叶的快速升温。印度洋温度趋势的模拟演变与气溶胶的峰值及其随后在二十一世纪的下降有关,从而强化了气溶胶影响海洋环流趋势的假设。

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