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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Intermodel Differences in Upwelling in the Tropical Tropopause Layer Among CMIP5 Models
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Intermodel Differences in Upwelling in the Tropical Tropopause Layer Among CMIP5 Models

机译:在上升流Intermodel差异热带对流层顶CMIP5模型层

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摘要

The climatology of upwelling in the tropical tropopause layer (TTL) in current climate simulations and in future climate projections is examined using models participated in the Coupled Model Intercomparison Project phase 5 (CMIP5). Large intermodel differences in upwelling in the TTL appear in the current climate simulations. Model composite analysis and upwelling diagnosis based on the zonal momentum budget indicate that the intermodel differences in upwelling are controlled by meridional eddy momentum fluxes associated with tropical planetary waves and midlatitude synoptic waves. Future climate simulations indicate that upwelling changes in the TTL are significantly correlated with the upwelling in current climate simulations. Models with strong (weak) TTL upwelling in the current climate simulations tend to project strong (weak) upwelling enhancement in the future climate. The intermodel differences in the upwelling change arise from the same dynamical factors as the current climate cases. The contribution of sea surface temperature (SST) to the intermodel upwelling differences is examined by SST-prescribed simulations in CMIP5. The contribution of intermodel SST differences to the upwelling is smaller than that of intrinsic atmospheric intermodel differences. The significant correlation of the tropical upwelling between the current climate simulations and the future changes appears to be independent of the target latitude range.
机译:热带的气候学上涌在当前气候对流层顶层(TTL)在未来气候模拟和预测使用模型检查参加了耦合模型相互比较项目阶段5 (CMIP5)。大型intermodel上升流的差异TTL出现在当前气候模拟。模型综合分析和上升流的诊断基于带状势头表明,预算intermodel上升流的差异由经向涡流动量通量控制与热带行星波和有关中间纬度综观波。模拟表明,上升流的变化TTL显著相关在当前气候模拟上涌。与强(弱)在当前TTL上涌气候模拟往往项目强(弱)上升流增强未来的气候。上升流intermodel差异变化来自相同的动力因素目前的气候情况。intermodel表面温度(SST)上升流差异检查在CMIP5 SST-prescribed模拟。intermodel SST差异的贡献内在的上升流小于大气intermodel差异。显著相关的热带上涌在当前气候模拟和之间未来的变化似乎是独立的目标纬度范围内。

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