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Spatiotemporal patterns of evapotranspiration in response to multiple environmental factors simulated by the Community Land Model

机译:群落土地模型模拟的多种环境因素对蒸散量的时空分布特征

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摘要

Spatiotemporal patterns of evapotranspiration (ET) over the period from 1982 to 2008 are investigated and attributed to multiple environmental factors using the Community Land Model version 4 (CLM4). Our results show that CLM4 captures the spatial distribution and interannual variability of ET well when compared to observation-based estimates. We find that climate dominates the predicted variability in ET. Elevated atmospheric CO2 concentration also plays an important role in modulating the trend of predicted ET over most land areas, and replaces climate to function as the dominant factor controlling ET changes over the North America, South America and Asia regions. Compared to the effect of climate and CO2 concentration, the roles of other factors such as nitrogen deposition, land use change and aerosol deposition are less pronounced and regionally dependent. The aerosol deposition contribution is the third most important factor for trends of ET over Europe, while it has the smallest impact over other regions. As ET is a dominant component of the terrestrial water cycle, our results suggest that environmental factors like elevated CO2, nitrogen and aerosol depositions, and land use change, in addition to climate, could have significant impact on future projections of water resources and water cycle dynamics at global and regional scales.
机译:使用社区土地模型第4版(CLM4),调查了1982年至2008年期间的蒸散量(ET)的时空格局,并将其归因于多种环境因素。我们的结果表明,与基于观测的估计相比,CLM4很好地捕获了ET的空间分布和年际变化。我们发现气候主导着ET的预测变异性。大气CO2浓度升高在调节大多数陆地地区的ET趋势方面也起着重要作用,并取代了气候,成为控制北美,南美和亚洲地区ET变化的主要因素。与气候和CO2浓度的影响相比,其他因素(如氮沉降,土地利用变化和气溶胶沉积)的作用不太明显,且与区域相关。气溶胶沉积的贡献是欧洲ET趋势的第三重要因素,而对其他地区的影响最小。由于ET是陆地水循环的主要组成部分,因此我们的研究结果表明,除了气候外,诸如二氧化碳,氮和气溶胶沉积升高以及土地利用变化等环境因素也可能对水资源和水循环的未来预测产生重大影响全球和区域规模的动态。

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