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Linking Northern Hemisphere blocking and storm track biases in the CMIP5 climate models

机译:将北半球的阻塞与CMIP5气候模式中的风暴径偏向联系起来

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摘要

[1] The relationship between biases in Northern Hemisphere (NH) atmospheric blocking frequency and extratropical cyclone track density is investigated in 12 CMIP5 climate models to identify mechanisms underlying climate model biases and inform future model development. Biases in the Greenland blocking and summer Pacific blocking frequencies are associated with biases in the storm track latitudes, while biases in winter European blocking frequency are related to the North Atlantic storm track tilt and Mediterranean cyclone density. However, biases in summer European and winter Pacific blocking appear less related with cyclone track density. Furthermore, the models with smaller biases in winter European blocking frequency have smaller biases in the cyclone density in Europe, which suggests that they are different aspects of the same bias. This is not found elsewhere in the NH. The summer North Atlantic and the North Pacific mean CMIP5 track density and blocking biases might therefore have different origins.
机译:[1]在12个CMIP5气候模式中研究了北半球(NH)大气阻塞频率的偏差与温带气旋径迹密度之间的关系,以确定气候模型偏差的潜在机制并为未来的模型开发提供信息。格陵兰阻塞和夏季太平洋阻塞频率的偏差与风暴径纬度的偏差有关,而欧洲冬季阻塞频率的偏差与北大西洋风暴径的倾斜度和地中海气旋密度有关。但是,夏季欧洲和冬季太平洋阻塞的偏差似乎与气旋径迹密度的关系较小。此外,在冬季欧洲阻塞频率具有较小偏差的模型在欧洲的气旋密度中具有较小的偏差,这表明它们是同一偏差的不同方面。在NH的其他地方找不到。因此,夏季北大西洋和北太平洋意味着CMIP5径迹密度和阻塞偏差可能有不同的起源。

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