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首页> 外文期刊>Tellus. A >Sensitivity of large-scale atmospheric analyses to humidity observations and its impact on the global water cycle and tropical and extratropical weather systems in ERA40
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Sensitivity of large-scale atmospheric analyses to humidity observations and its impact on the global water cycle and tropical and extratropical weather systems in ERA40

机译:大规模大气分析对湿度观测的敏感性及其对ERA40中全球水循环以及热带和温带天气系统的影响

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摘要

Reanalysis data obtained from data assimilation are increasingly used for diagnostic studies of the general circulation of the atmosphere, for the validation of modelling experiments and for estimating energy and water fluxes between the Earth surface and the atmosphere. Because fluxes are not specifically observed, but determined by the data assimilation system, they are not only influenced by the utilized observations but also by model physics and dynamics and by the assimilation method. In order to better understand the relative importance of humidity observations for the determination of the hydrological cycle, in this paper we describe an assimilation experiment using the ERA40 reanalysis system where all humidity data have been excluded from the observational data base. The surprising result is that the model, driven by the time evolution of wind, temperature and surface pressure, is able to almost completely reconstitute the large-scale hydrological cycle of the control assimilation without the use of any humidity data. In addition, analysis of the individual weather systems in the extratropics and tropics using an objective feature tracking analysis indicates that the humidity data have very little impact on these systems. We include a discussion of these results and possible consequences for the way moisture information is assimilated, as well as the potential consequences for the design of observing systems for climate monitoring. It is further suggested, with support from a simple assimilation study with another model, that model physics and dynamics play a decisive role for the hydrological cycle, stressing the need to better understand these aspects of model parametrization.
机译:从数据同化中获得的再分析数据越来越多地用于大气总循环的诊断研究,验证模型实验以及估算地球表面与大气之间的能量和水通量。因为通量不是专门观测的,而是由数据同化系统确定的,所以它们不仅受所用观测值的影响,而且还受模型物理和动力学以及同化方法的影响。为了更好地了解湿度观测对于确定水文循环的相对重要性,在本文中,我们描述了使用ERA40再分析系统进行的同化实验,其中所有湿度数据均已从观测数据库中排除。令人惊讶的结果是,在风,温度和表面压力随时间变化的驱动下,该模型几乎可以完全重建控制同化的大规模水文循环,而无需使用任何湿度数据。此外,使用客观特征跟踪分析对热带和热带各个气象系统的分析表明,湿度数据对这些系统的影响很小。我们将讨论这些结果以及对水分信息吸收方式可能产生的影响,以及对气候监测观测系统设计的潜在影响。进一步建议,在与另一个模型的简单同化研究的支持下,模型物理和动力学对水文循环起决定性作用,强调需要更好地理解模型参数化的这些方面。

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