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Atmospheric response to different sea surface temperatures in the Baltic Sea: coupled versus uncoupled regional climate model experiments

机译:波罗的海对不同海表温度的大气响应:耦合与非耦合区域气候模型实验

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摘要

A climate change experiment with afully coupled high resolution regional atmosphere-ocean model for the Baltic Sea is compared to an experiment with a stand-alone regional atmospheric model. Both experiments simulate 30-yr periods with boundary data from the same global climate model system. This particular global model system simulates very high sea surface temperatures during summer for the Baltic Sea at the end of this century under the investigated emission scenario. We show that the sea surface temperatures are less warm in the coupled regional model compared to the global model system and that this difference is dependent on the atmospheric circulation. In summers with a high NAO index and thereby relatively strong westerly flow over the North Atlantic the differences between the two models are small, while in summers with a weaker, more northerly flow over the Baltic Sea the differences are very large. The higher sea surface temperatures in the uncoupled experiment lead to an intensified hydrological cycle over the Baltic Sea, with more than 30% additional precipitation in summer taken as an average over the full 30-yr period and over the entire Baltic Sea. The differences are mostly local, over the sea, but there are differences in surrounding land areas.
机译:将具有波罗的海高分辨率区域大气-海洋模型的完全耦合的气候变化实验与具有独立区域大气模型的实验进行了比较。这两个实验都使用来自同一全球气候模型系统的边界数据模拟了30年周期。在调查的排放情景下,这个特殊的全球模型系统在本世纪末模拟了波罗的海夏季极高的海表温度。我们显示,与全局模型系统相比,耦合区域模型中的海面温度不那么温暖,并且这种差异取决于大气环流。在NAO指数高的夏季,北大西洋上空的西风相对较强,两种模式之间的差异很小,而在波罗的海上的北风偏弱,夏季的夏季,两种模式之间的差异非常大。在非耦合实验中,较高的海表温度导致波罗的海的水文循环加剧,整个30年和整个波罗的海的夏季平均增加了30%以上的额外降水。差异主要是局部的,海上的,但周围的陆地地区也存在差异。

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