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首页> 外文期刊>Journal of Climate >Diagnostic computation of moisture budgets in the ERA-Interim reanalysis with reference to analysis of CMIP-Archived atmospheric model data.
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Diagnostic computation of moisture budgets in the ERA-Interim reanalysis with reference to analysis of CMIP-Archived atmospheric model data.

机译:参照CMIP存档的大气模型数据的分析,在ERA中期重新分析中对水分预算的诊断计算。

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The diagnostic evaluation of moisture budgets in archived atmosphere model data is examined. Sources of error in diagnostic computation can arise from the use of numerical methods different from those used in the atmosphere model, the time and vertical resolution of the archived data, and data availability. These sources of error are assessed using the climatological moisture balance in the European Centre for Medium-Range Weather Forecasts Interim Re-Analysis (ERA-Interim) that archives vertically integrated moisture fluxes and convergence. The largest single source of error arises from the diagnostic evaluation of divergence. The chosen second-order accurate centered finite difference scheme applied to the actual vertically integrated moisture fluxes leads to significant differences from the ERA-Interim reported moisture convergence. Using daily data, instead of 6-hourly data, leads to an underestimation of the patterns of moisture divergence and convergence by midlatitude transient eddies. A larger and more widespread error occurs when the vertical resolution of the model data is reduced to the 8 levels that is quite common for daily data archived for the Coupled Model Intercomparison Project (CMIP). Dividing moisture divergence into components due to the divergent flow and advection requires bringing the divergence operator inside the vertical integral, which introduces a surface term for which a means of accurate evaluation is developed. The analysis of errors is extended to the case of the spring 1993 Mississippi valley floods, the causes of which are discussed. For future archiving of data (e.g., by CMIP), it is recommended that monthly means of time-step-resolution flow-humidity covariances be archived at high vertical resolution.
机译:检验了存档的大气模型数据中水分预算的诊断评估。诊断计算中的错误源可能来自与大气模型不同的数值方法,存档数据的时间和垂直分辨率以及数据可用性。使用欧洲中型天气预报中心中期重新分析(ERA-Interim)中的气候湿度平衡来评估这些误差源,该分析可以对垂直积分的水分通量和收敛进行存档。错误的最大单一来源来自对差异的诊断评估。应用于实际垂直积分水分通量的所选二阶精确中心有限差分方案导致与ERA-Interim报告的水分收敛存在显着差异。使用每日数据而不是每小时6小时的数据,会导致中纬度瞬变涡流低估了水分散布和收敛的模式。当模型数据的垂直分辨率降低到8个级别时,会发生更大且更普遍的错误,这对于耦合模型比较项目(CMIP)每日存档的数据来说是很常见的。由于分叉的流动和对流将水分分叉分为多个组成部分,因此需要将分叉算子带入垂直积分内部,这会引入一个表面项,为此需要开发一种精确的评估方法。对错误的分析扩展到1993年春季密西西比河谷洪水的案例,并讨论了其原因。对于将来的数据归档(例如,通过CMIP),建议以高的垂直分辨率归档时间步长分辨率流量-湿度协方差的每月平均值。

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