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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Links between circulation types and precipitation in Central Europe in the observed data and regional climate model simulations
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Links between circulation types and precipitation in Central Europe in the observed data and regional climate model simulations

机译:观测数据和区域气候模式模拟中的中欧环流类型与降水之间的联系

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摘要

The study investigates the relationships between large-scale atmospheric circulation (represented by circulation indices and 27 circulation types derived from gridded mean sea level pressure) and daily precipitation amounts over three regions in the Czech Republic (Central Europe) with different precipitation regimes. We examine how ENSEMBLES regional climate model (RCM) simulations driven by re-analysis reproduce the observed links and capture differences in the links between given regions (lowland vs highlands) and seasons. We study the links of circulation to (1) mean precipitation over the regions, (2) probability of wet days, and (3) probability of extreme daily precipitation (exceeding threshold defined by a high quantile of precipitation distribution in a given season). We find quite strong links in the observed data between atmospheric circulation and these precipitation characteristics. The links are generally more pronounced for highland than lowland regions. More wet days and higher precipitation amounts are found for cyclonic and stronger flows, and for westerly and north-easterly flows. The RCMs are generally able to capture basic features of the links. They nevertheless have difficulties to reproduce some more specific features and differences in the links between the regions. Results also suggest that good performance in some precipitation characteristics may be due to compensating errors rather than model's perfection.
机译:该研究调查了捷克共和国(中欧)不同降水方式下的三个地区的大规模大气环流(用环流指数和来自网格化平均海平面压力的27种环流类型表示)与日降水量之间的关系。我们研究了通过重新分析驱动的ENSEMBLES区域气候模型(RCM)模拟如何重现观察到的联系并捕获给定区域(低地与高地)和季节之间的联系差异。我们研究了环流与(1)区域平均降水量,(2)湿日概率和(3)极端日降水量(超出给定季节的高降水量定义的阈值)的联系。我们在大气环流与这些降水特征之间的观测数据中发现了很强的联系。高地的联系通常比低地的联系更为明显。对于旋风和更强的流量,以及西风和东北风,发现更多的湿日和更高的降水量。 RCM通常能够捕获链接的基本功能。但是,它们很难重现一些更具体的特征和区域之间联系的差异。结果还表明,某些降水特征的良好性能可能是由于补偿误差而不是模型的完善。

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