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Decadal variability of tropical tropopause temperature and its relationship to the Pacific Decadal Oscillation

机译:热带对流层顶温度的年代际变化及其与太平洋年代际振荡的关系

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摘要

Tropopause temperatures (TPTs) control the amount of stratospheric water vapour, which influences chemistry, radiation and circulation in the stratosphere, and is also an important driver of surface climate. Decadal variability and long-term trends in tropical TPTs as well as stratospheric water vapour are largely unknown. Here, we present for the first time evidence, from reanalysis and state-of-the-art climate model simulations, of a link between decadal variability in tropical TPTs and the Pacific Decadal Oscillation (PDO). The negative phase of the PDO is associated with anomalously cold sea surface temperatures (SSTs) in the tropical east and central Pacific, which enhance the zonal SST gradient across the equatorial Pacific. The latter drives a stronger Walker Circulation and a weaker Hadley Circulation, which leads to less convection and subsequently a warmer tropopause over the central equatorial Pacific. Over the North Pacific, positive sea level pressure anomalies occur, which damp vertical wave propagation into the stratosphere. This in turn slows the Brewer-Dobson circulation, and hence warms the tropical tropopause, enabling more water vapour to enter the stratosphere. The reverse chain of events holds for the positive phase of the PDO. Such ocean-troposphere-stratosphere interactions may provide an important feedback on the Earth’s global surface temperature.
机译:对流层温度(TPT)控制平流层中水蒸气的量,这会影响平流层中的化学物质,辐射和循环,也是表面气候的重要驱动因素。热带TPTs和平流层水汽的年代际变化和长期趋势在很大程度上是未知的。在这里,我们通过重新分析和最新的气候模型模拟首次提出了热带TPTs年代际变化与太平洋年代际涛动(PDO)之间联系的证据。 PDO的负相与热带东部和中太平洋的异常冷海表面温度(SST)有关,这会增强整个赤道太平洋的纬向海温梯度。后者推动了更强的沃克环流和较弱的哈德利环流,这导致对流减少,随后导致赤道中部太平洋的对流层顶变暖。在北太平洋上空,出现正海平面压力异常,这会抑制垂直波传播到平流层。反过来,这减慢了Brewer-Dobson的循环,从而使热带对流层顶变暖,使更多的水蒸气进入平流层。事件的反向链对PDO的积极阶段有效。这样的海洋-对流层-平流层相互作用可能会提供有关地球全球表面温度的重要反馈。

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