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Nonlinear response of tropical lower-stratospheric temperature and water vapor to ENSO

机译:热带较低平流层温度和水蒸气对ENSo的非线性响应

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A series of simulations using the NASA Goddard Earth Observing System Chemistry–Climate Model are analyzed in order to aid in the interpretation of observed interannual and sub-decadal variability in the tropical lower stratosphere over the past 35?years. The impact of El Ni?o–Southern Oscillation on temperature and water vapor in this region is nonlinear in boreal spring. While moderate El Ni?o events lead to cooling in this region, strong El Ni?o events lead to warming, even as the response of the large-scale Brewer–Dobson circulation appears to scale nearly linearly with El Ni?o. This nonlinearity is shown to arise from the response in the Indo-West Pacific to El Ni?o: strong El Ni?o events lead to tropospheric warming extending into the tropical tropopause layer and up to the cold point in this region, where it allows for more water vapor to enter the stratosphere. The net effect is that both strong La Ni?a and strong El Ni?o events lead to enhanced entry water vapor and stratospheric moistening in boreal spring and early summer. These results lead to the following interpretation of the contribution of sea surface temperatures to the decline in water vapor in the early 2000s: the very strong El Ni?o event in 1997/1998, followed by more than 2 consecutive years of La Ni?a, led to enhanced lower-stratospheric water vapor. As this period ended in early 2001, entry water vapor concentrations declined. This effect accounts for approximately one-quarter of the observed drop.
机译:分析了使用美国宇航局戈达德地球观测系统化学 - 气候模型的一系列模拟,以帮助解释在过去35年过去35年的热带较低平流层中观察到的持续持续和次数变异性的解释。 El Ni的影响在该区域中温度和水蒸气的影响是非线性的非线性。虽然中等El Ni?O事件导致该地区的冷却,强烈的El Ni?O事件导致变暖,即使大规模的Brewer-Dobson循环的响应似乎与El Ni jieSeal几乎线性缩放。这种非线性被认为是从Indo-West太平洋的反应来到El Ni?O:强壮的El Ni?O事件导致对流层升温到热带对流层层层和该地区的冷点,允许对于更多的水蒸气进入平流层。净效应是强壮的La Ni?A和强壮的El Ni?O事件导致北方春季和初夏的增强进入水蒸气和平流层湿润。这些结果导致对2000年代初的海面温度对水蒸气下降的解释:1997/1998年的强大el ni?o活动,随后连续2年的La Ni?a ,导致增强的较低平流层水蒸气。正如本期在2001年初结束的那样,进入水蒸气浓度下降。这种效果占观察到的大约四分之一。

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