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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Simulation of the relative impact of land cover and carbon dioxide to climate change from 1700 to 2100
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Simulation of the relative impact of land cover and carbon dioxide to climate change from 1700 to 2100

机译:模拟的相对土地覆盖的影响和二氧化碳对气候变化从1700年到2100

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The contribution of land cover change (relative to increased CO2) to climate change at the global scale is investigated using the Global Environmental and Ecological Simulations of Interactive Systems (GENESIS) climate model with an interactive BIOME vegetation model based on simulations at 1700 and 2100. Three 40-year model equilibrium simulations were performed. The first experiment specified carbon dioxide levels of 280 ppmv without human-induced land use (1700); the second experiment specified carbon dioxide levels of 690 ppmv without human-induced land use; the third experiment specified carbon dioxide levels of 690 ppmv and included patterns of extensive human land use (as projected for 2100). Data on the extent of human modification to the land at different times were obtained from the History Database of the Global Environment (HYDE) for 1700 and the Integrated Model to Assess the Global Environment (IMAGE2.2) for 2100. The IMAGE model projects land cover changes in response to demographic and economic activity. The projection based on the A1b scenario of the Intergovernmental Panel on Climate Change Special Report on Emission Scenarios was used for this work. As expected, statistically significant (95% level) climate changes in response to carbon dioxide levels were widespread. In contrast, the impact of the land cover change appears to reduce the spatial extent and sometimes magnitude of the changes in temperature due to increased carbon dioxide. Regions where land cover change explained more than 60% of the combined signal due to an increase in CO2 and land cover change are confined to the Northern Hemisphere for near-surface temperature. Projected land cover changes produced warming (but smaller than that produced by CO2) in some regions and cooling in other regions. The warming, which is about 4 K (seasonal) in some mid to high latitudes, is dominated by physiological factors altering the balance of latent to sensible heating rather than morphological mechanisms. The simulated changes in precipitation are more complex.
机译:土地覆盖变化(相对于的贡献增加二氧化碳在全球气候变化使用全球规模了环境和生态的模拟气候模型与交互系统(创世纪)基于交互式生物群落植被模型在1700年和2100年模拟。平衡模拟进行。实验280指定的二氧化碳水平ppmv没有人为土地利用(1700);第二个实验中指定的二氧化碳水平690 ppmv没有人为土地利用;第三个实验指定的二氧化碳水平690 ppmv,包括广泛的模式人类土地利用(预计2100年)。人类改造土地的程度得到了不同时期的历史全球环境(海德)的数据库1700年,综合评估模型2100年全球环境(IMAGE2.2)。土地覆盖变化响应模型项目人口和经济活动。基于aib的场景政府间气候变化专门委员会特别被用于这个报告排放场景工作。)气候变化应对碳水平二氧化碳含量普遍。土地覆盖变化似乎减少的影响空间范围和有时的大小由于增加的碳温度变化二氧化物解释了超过60%的合并后的信号由于二氧化碳的增加和土地覆盖变化局限于北半球近地表温度。变化产生变暖(但小于产生的二氧化碳)在一些地区和冷却其它地区。(季节性)的一些年中高纬度地区,由生理因素改变潜在的明智的加热,而不是平衡形态学机制。在降水更为复杂。

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