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Spatial and temporal variability of land CO2 fluxes estimated with remote sensing and analysis data over western Eurasia

机译:欧亚大陆西部遥感和分析数据估算土地CO 2 通量的时空变异性

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摘要

The Eurosiberian Carbonflux project was designed to address the feasibility of inferring the regional carbon balance over Europe and Siberia from a hierarchy of models and atmospheric CO measurements over the continent. Such atmospheric CO concentrations result from the combination of connective boundary layer dynamics, synoptic events, large-scale transport Of CO, and regional surface fluxes and depend on the variability of these processes in time and space. In this paper we investigate the spatial and temporal variability of the land surface CO fluxes derived from the TURC model. This productivity model is driven by satellite NDVI and forced by ECMWF or REMO meteorology. We first present an analysis of recent CO flux measurements over temperate and boreal forests, which are used to update the TURC model. A strong linear relationship has been found between maximum hourly CO fluxes and the mean annual air temperature, showing that boreal biomes have a lower photosynthetic capacity than temperate ones. Then, model input consistency and simulated CO flux accuracy are evaluated against local measurements from two sites in Russia. Finally, the spatial and temporal patterns of the daily CO fluxes over Eurasia are analysed. We show that, during the growing season (spring and summer), the daily CO fluxes display characteristic spatial patterns of positive and negative fluxes at the synoptic scale. These patterns are found to correspond to cloudy areas (areas with low incoming radiation) and to follow the motion of cloud cover areas over the whole domain. As a consequence, we argue that covariations of surface CO fluxes and atmospheric transport at the synoptic scale may impact CO concentrations over continents and need to be investigated.
机译:Eurosiberian Carbonflux项目旨在解决从欧洲大陆模型和大气CO测量层次结构推断欧洲和西伯利亚区域碳平衡的可行性。这种大气中的CO浓度是由结缔合边界层动力学,天气事件,CO的大规模运输和区域表面通量的组合所导致的,并且取决于这些过程在时间和空间上的可变性。在本文中,我们研究了从TURC模型得出的陆地表面CO通量的时空变化。该生产率模型由卫星NDVI驱动,并由ECMWF或REMO气象学强制实施。我们首先对最近在温带和寒带森林中的CO通量测量值进行分析,以用于更新TURC模型。已发现最大每小时CO通量与年平均气温之间存在很强的线性关系,这表明北方生物群落的光合能力低于温带生物群落。然后,根据俄罗斯两个站点的本地测量结果评估了模型输入的一致性和模拟的CO通量精度。最后,分析了欧亚大陆日CO通量的时空格局。我们表明,在生长季节(春季和夏季),每天的CO通量在天气尺度上显示正和负通量的特征空间格局。发现这些模式对应于多云区域(入射辐射低的区域),并在整个区域内跟随云层覆盖区域的运动。因此,我们认为在天气尺度上表面CO通量和大气传输的协变可能会影响整个大陆上的CO浓度,需要进行研究。

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