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Spatial relationship between climatologies and changes in global vegetation activity

机译:气候与全球植被活动变化之间的空间关系

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Vegetation forms a main component of the terrestrial biosphere and plays a crucial role in land-cover and climate-related studies. Activity of vegetation systems is commonly quantified using remotely sensed vegetation indices (VI). Extensive reports on temporal trends over the past decades in time series of such indices can be found in literature. However, little remains known about the processes underlying these changes at large spatial scales. In this study, we aimed at quantifying the spatial relationship between changes in potential climatic growth constraints (i.e. temperature, precipitation and incident solar radiation) and changes in vegetation activity (19822008). We demonstrate an additive spatial model with 0.5 degrees resolution, consisting of a regression component representing climate-associated effects and a spatially correlated field representing the combined influence of other factors, including land-use change. Little over 50% of the spatial variance could be attributed to changes in climatologies; conspicuously, many greening trends and browning hotspots in Argentina and Australia. The nonassociated model component may contain large-scale human interventions, feedback mechanisms or natural effects, which were not captured by the climatologies. Browning hotspots in this component were especially found in subequatorial Africa. On the scale of land-cover types, strongest relationships between climatologies and vegetation activity were found in forests, including indications for browning under warming conditions (analogous to the divergence issue discussed in dendroclimatology).
机译:植被是陆地生物圈的主要组成部分,在土地覆盖和与气候有关的研究中起着至关重要的作用。植被系统的活动通常使用遥感植被指数(VI)进行量化。可以在文献中找到有关此类指标在过去几十年中的时间趋势的大量报道。但是,对于这些在大空间尺度上变化的过程所知甚少。在这项研究中,我们旨在量化潜在的气候增长约束条件的变化(即温度,降水和入射太阳辐射)与植被活动变化之间的空间关系(19822008)。我们演示了分辨率为0.5度的加性空间模型,该模型由代表气候相关影响的回归分量和代表其他因素(包括土地利用变化)的综合影响的空间相关字段组成。 50%以上的空间变化可归因于气候变化;明显地,阿根廷和澳大利亚的许多绿化趋势和褐化热点。非关联模型组件可能包含气候未捕获的大规模人工干预,反馈机制或自然效应。该部分的褐变热点特别是在赤道下非洲。在土地覆盖类型的规模上,在森林中发现了气候与植被活动之间最强的关系,包括变暖条件下褐变的迹象(类似于树状气候学中讨论的分歧问题)。

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