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Determining Robust Impacts of Land-Use-Induced Land Cover Changes on Surface Climate over North America and Eurasia: Results from the First Set of LUCID Experiments

机译:确定土地利用引起的土地覆盖变化对北美和欧亚大陆地表气候的强烈影响:第一组LUCID实验的结果

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The project Land-Use and Climate, Identification of Robust Impacts (LUCID) was conceived to address the robustness of biogeophysical impacts of historical land use-land cover change (LULCC). LUCID used seven atmosphere-land models with a common experimental design to explore those impacts of LULCC that are robust and consistent across the climate models. The biogeophysical impacts of LULCC were also compared to the impact of elevated greenhouse gases and resulting changes in sea surface temperatures and sea ice extent (CO2SST). Focusing the analysis on Eurasia and North America, this study shows that for a number of variables LULCC has an impact of similar magnitude but of an opposite sign, to increased greenhouse gases and warmer oceans. However, the variability among the individual models' response to LULCC is larger than that found from the increase in CO2SST. The results of the study show that although the dispersion among the models' response to LULCC is large, there are a number of robust common features shared by all models: the amount of available energy used for turbulent fluxes is consistent between the models and the changes in response to LULCC depend almost linearly on the amount of trees removed. However, less encouraging is the conclusion that there is no consistency among the various models regarding how LULCC affects the partitioning of available energy between latent and sensible heat fluxes at a specific time. The results therefore highlight the urgent need to evaluate land surface models more thoroughly, particularly how they respond to a perturbation in addition to how they simulate an observed average state.
机译:设想了“土地利用与气候,鲁棒影响的识别”(LUCID)项目,以解决历史土地利用-土地覆盖变化(LULCC)的生物地球物理影响的鲁棒性。 LUCID使用七个具有共同实验设计的大气-土地模型来探索LULCC在整个气候模型中具有鲁棒性和一致性的影响。还比较了LULCC的生物地球物理影响与温室气体升高以及由此引起的海面温度和海冰范围(CO2SST)变化的影响。集中于欧亚大陆和北美的分析,该研究表明,对于许多变量,LULCC对温室气体的增加和海洋变暖的影响程度相似但相反。但是,各个模型对LULCC的响应之间的变异性大于从CO2SST的增加中发现的变异性。研究结果表明,尽管模型对LULCC的响应之间的离散程度很大,但是所有模型都有许多强大的共同特征:用于湍流的可用能量在模型和变化之间是一致的对LULCC的响应几乎线性地取决于被砍伐的树木数量。但是,令人鼓舞的结论是,关于LULCC如何影响特定时间在潜热通量和显热通量之间的可用能量分配,各种模型之间没有一致性。因此,结果强调了迫切需要更彻底地评估地表模型,尤其是它们如何模拟扰动以及如何模拟观测到的平均状态。

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