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首页> 外文期刊>Geophysical Research Letters >Planetary boundary layer energetics simulated from a regional climate model over Europe for present climate and climate change conditions
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Planetary boundary layer energetics simulated from a regional climate model over Europe for present climate and climate change conditions

机译:根据当前气候和气候变化条件,从欧洲区域气候模型模拟得出的行星边界层能量

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摘要

This paper presents a description of the planetary boundary layer (PBL) for current (1960-1990) and future (2070-2100) climate periods as obtained from a regional climate model (RCM) centered on the Mediterranean basin. Vertically integrated turbulent kinetic energy (TKEZ) and boundary layer height (z(i)) are used to describe PBL energetics. Present climate shows a TKEZ annual cycle with a clear summer maximum for southern regions, while northern regions of Europe exhibit a smoother or even a lack of cycle. Future climate conditions exhibit a similar behaviour, with an increase in the summer maximum peaks. A detailed analysis of summer surface climate change energetics over land shows an increased Bowen ratio and decreases in the evaporative fraction. The enhanced sensible heat flux responsible for these results causes an energy surplus inside the PBL, resulting in increased convective activity and corresponding TKEZ. These results are consistent with temperature increases obtained by several other model simulations, and also indicate that changes in the turbulent transport from the PBL to the free troposphere can affect atmospheric circulations.
机译:本文介绍了从以地中海盆地为中心的区域气候模型(RCM)获得的当前(1960-1990)和未来(2070-2100)气候时期的行星边界层(PBL)。垂直积分湍动能(TKEZ)和边界层高度(z(i))用于描述PBL能量。当前的气候表明,TKEZ的年度周期为南部地区,夏季明显是最大的夏季,而欧洲北部地区则表现出较为平稳甚至缺乏周期。未来的气候条件表现出类似的行为,夏季最大峰值增加。对陆地夏季表面气候变化能量的详细分析表明,Bowen比增加,而蒸发分数降低。造成这些结果的显热通量增加,会导致PBL内部能量过剩,从而导致对流活动和相应的TKEZ增大。这些结果与通过其他几种模型模拟获得的温度升高是一致的,并且还表明从PBL到自由对流层的湍流传输变化会影响大气环流。

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