4.6 Article

The precipitation climate of Central Asia -: intercomparison of observational and numerical data sources in a remote semiarid region

期刊

INTERNATIONAL JOURNAL OF CLIMATOLOGY
卷 28, 期 3, 页码 295-314

出版社

WILEY-BLACKWELL
DOI: 10.1002/joc.1532

关键词

regional climate modelling; numerical downscaling; global precipitation climatologies; re-analysis precipitation; Central Asia; semiarid regions

资金

  1. Natural Environment Research Council [NER/O/S/2002/00975, ncas10009] Funding Source: researchfish

向作者/读者索取更多资源

In this study, we systematically compare a wide range of observational and numerical precipitation datasets for Central Asia. Data considered include two re-analyses, three datasets based on direct observations, and the output of a regional climate model simulation driven by a global re-analysis. These are validated and intercompared with respect to their ability to represent the Central Asian precipitation climate. In each of the datasets, we consider the mean spatial distribution and the seasonal cycle of precipitation, the amplitude of interannual variability, the representation of individual yearly anomalies, the precipitation sensitivity (i.e. the response to wet and dry conditions), and the temporal homogeneity of precipitation. Additionally, we carried out part of these analyses for datasets available in real time. The mutual agreement between the observations is used as an indication of how far these data can be used for validating precipitation data from other sources. In particular, we show that the observations usually agree qualitatively on anomalies in individual years while it is not always possible to use them for the quantitative validation of the amplitude of interannual variability. The regional climate model is capable of improving the spatial distribution of precipitation. At the same time, it strongly underestimates summer precipitation and its variability, while interannual variations are well represented during the other seasons, in particular in the Central Asian mountains during winter and spring. Copyright (c) 2007 Royal Meteorological Society.

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