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Examining the stratospheric response to the solar cycle in a coupled WACCM simulation with an internally generated QBO

机译:通过内部生成的QBO,在结合WACCM模拟中检查平流层对太阳周期的响应

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pstrongAbstract./strong The response of the stratosphere to the combined interaction of the quasi-biennial oscillation (QBO) and the solar cycle in ultraviolet (UV) radiation, and the influence of the solar cycle on the QBO, are investigated using the Whole Atmosphere Community Climate Model (WACCM). Transient simulations were performed beginning in 1850 that included fully interactive ocean and chemistry model components, observed greenhouse gas concentrations, volcanic eruptions, and an internally generated QBO. Over the full length of the simulations we do not find a solar cycle modulation of either the QBO period or amplitude. We also do not find a persistent wintertime UV response in polar stratospheric geopotential heights when stratifying by the QBO phase. Over individual ~40 year periods of the simulation, a statistically significant correlation is sometimes found between the northern polar geopotential heights in February and UV irradiance during the QBO's westerly phase. However, the sign of the correlation varies over the simulation, and is never significant during the QBO's easterly phase. Complementing this is the analysis of four simulations using a QBO prescribed to match observations over the period 1953a??2005. Again, no consistent correlation is evident. In contrast, over the same period, meteorological reanalysis shows a strong positive correlation during the QBO westerly phase, although it weakens as the period is extended. The results raise the possibility that the observed polar solara??QBO correlation may have occurred because of the relatively short data record and the presence of additional external forcings rather than a direct solara??QBO interaction./p.
机译:> >摘要。平流层对准双年振荡(QBO)和太阳周期在紫外线(UV)辐射中相互作用的响应,以及太阳周期对太阳辐射的影响。使用整个大气社区气候模型(WACCM)对QBO进行了调查。从1850年开始进行了瞬态模拟,包括完全互动的海洋和化学模型组成部分,观测到的温室气体浓度,火山喷发和内部产生的QBO。在整个模拟过程中,我们找不到QBO周期或幅度的太阳周期调制。当通过QBO相分层时,我们也没有发现在极地平流层地势高度持续的冬季紫外线响应。在整个模拟的大约40年期间,有时会发现2月的北极极地势高度与QBO的西风阶段的紫外线辐射之间存在统计学上的显着相关性。但是,相关性的符号随模拟的变化而变化,并且在QBO的东风阶段从不显着。与此相辅相成的是,使用规定与1953a至2005年期间的观测值相匹配的QBO对四个模拟进行了分析。同样,没有一致的相关性是明显的。相反,在同一时期,气象再分析在QBO西风阶段显示出很强的正相关性,尽管随着时间的延长它减弱了。研究结果增加了观测到的极地solara ?? QBO相关性的可能性,这是由于相对较短的数据记录和存在额外的外部强迫而不是直接的solara ?? QBO相互作用。

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