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Northwestern Pacific typhoon intensity controlled by changes in ocean temperatures

机译:西北太平洋台风强度受海洋温度变化的控制

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摘要

Dominant climatic factors controlling the lifetime peak intensity of typhoons are determined from six decades of Pacific typhoon data. We find that upper ocean temperatures in the low-latitude northwestern Pacific (LLNWP) and sea surface temperatures in the central equatorial Pacific control the seasonal average lifetime peak intensity by setting the rate and duration of typhoon intensification, respectively. An anomalously strong LLNWP upper ocean warming has favored increased intensification rates and led to unprecedentedly high average typhoon intensity during the recent global warming hiatus period, despite a reduction in intensification duration tied to the central equatorial Pacific surface cooling. Continued LLNWP upper ocean warming as predicted under a moderate [that is, Representative Concentration Pathway (RCP) 4.5] climate change scenario is expected to further increase the average typhoon intensity by an additional 14% by 2100.
机译:控制太平洋台风寿命高峰强度的主要气候因素是根据太平洋台风的六十年数据确定的。我们发现低纬西北太平洋(LLNWP)的较高海洋温度和赤道中太平洋的海面温度分别通过设定台风强度和持续时间来控制季节平均寿命峰值强度。尽管近来赤道太平洋中部表面冷却的持续时间缩短了,但近地偏高变暖异常的上层海洋变暖却有利于集约化率的提高,并在最近的全球变暖中断期间导致了前所未有的高台风强度。在适度的[即代表浓度途径(RCP)4.5]气候变化情景下,预计LLNWP持续的较高海洋变暖将在2100年之前使平均台风强度进一步增加14%。

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