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首页> 外文期刊>Journal of the Atmospheric Sciences >Interannual Variations of Stratospheric Water Vapor in MLS Observations and Climate Model Simulations
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Interannual Variations of Stratospheric Water Vapor in MLS Observations and Climate Model Simulations

机译:MLS观测中平流层水汽的年际变化和气候模式模拟。

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摘要

By analyzing the almost-decade-long record of water vapor measurements from the Microwave Limb Sounder (MLS) instrument on theNASA Aura satellite and by detailed diagnostic analysis of the results from state-of-the art climate model simulations, this study confirmed the conceptual picture of the interannual variation in equatorial stratospheric water vapor discussed in earlier papers (e.g., Geller et al.). The interannual anomalies in water vapor are strongly related to the dynamical quasi-biennial oscillation (QBO), and this study presents the first QBO composite of the time–height structure of the equatorial water vapor anomalies. The anomalies display upward propagation below about 10 hPa in a manner analogous to the annual ‘‘tape recorder’’ effect, but at higher levels they show clear downward propagation. This study examined these variations in the Model for Interdisciplinary Research on Climate (MIROC)-AGCM and in four models in phase 5 of the Coupled Model Intercomparison Project (CMIP5) that simulate realistic QBOs. Diagnostic budget analysis of the MIROC-AGCM data and comparisons among the CMIP5 model results demonstrate (i) the importance of temperature anomalies at the tropopause induced by the QBO for lowerstratospheric water vapor variations and (ii) that upper-stratospheric water vapor anomalies are largely driven by advection of the mean vertical gradient of water content by theQBOinterannual fluctuations in the vertical wind.
机译:通过分析NASA Aura卫星上的微波探空仪(MLS)仪器近十年来的水蒸气测量记录,并通过对最新气候模型模拟结果的详细诊断分析,该研究证实了这一概念早期论文中讨论过的赤道平流层水汽年际变化的图片(例如,Geller等人)。水汽的年际异常与动态准双年度振荡(QBO)密切相关,这项研究提出了赤道水汽异常的时高结构的第一个QBO复合。异常显示出低于10 hPa的向上传播,其方式类似于每年的“磁带记录器”效应,但是在较高的水平上,它们显示出明显的向下传播。这项研究检查了气候跨学科研究模型(MIROC)-AGCM中的这些变化以及耦合模型比较项目(CMIP5)的第5阶段中的四个模型,这些模型模拟了现实的QBO。 MIROC-AGCM数据的诊断预算分析以及CMIP5模型结果之间的比较表明(i)QBO引起的对流层顶温度异常对于平流层下部水汽变化的重要性,以及(ii)高层平流层水汽异常在很大程度上由垂直风中QBO年际波动对水平均垂直梯度的平流驱动。

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