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首页> 外文期刊>Annals of the New York Academy of Sciences >Atmospheric heat and moisture transport to energy- and water-limited ecosystems
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Atmospheric heat and moisture transport to energy- and water-limited ecosystems

机译:大气热量和水分运输到能量和有限的生态系统

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摘要

The land biosphere is a crucial component of the Earth system that interacts with the atmosphere in a complex manner through manifold feedback processes. These relationships are bidirectional, as climate affects our terrestrial ecosystems, which, in turn, influence climate. Great progress has been made in understanding the local interactions between the terrestrial biosphere and climate, but influences from remote regions through energy and water influxes to downwind ecosystems remain less explored. Using a Lagrangian trajectory model driven by atmospheric reanalysis data, we show how heat and moisture advection affect gross carbon production at interannual scales and in different ecoregions across the globe. For water-limited regions, results show a detrimental effect on ecosystem productivity during periods of enhanced heat and reduced moisture advection. These periods are typically associated with winds that disproportionately come from continental source regions, as well as positive sensible heat flux and negative latent heat flux anomalies in those upwind locations. Our results underline the vulnerability of ecosystems to the occurrence of upwind climatic extremes and highlight the importance of the latter for the spatiotemporal propagation of ecosystem disturbances.
机译:土地生物圈是地球系统的关键组成部分,其通过歧管反馈过程以复杂的方式与大气相互作用。这些关系是双向的,因为气候影响我们的陆地生态系统,反过来,这反过来影响气候。在理解陆地生物圈和气候之间的局部相互作用方面取得了巨大进展,而是通过能量和水涌入到向下风生态系统的偏远地区的影响仍然较少。使用由大气再分析数据驱动的拉格朗日轨迹模型,我们展示了热和水分平流如何影响际碳生产的依赖秤以及全球不同的生态。对于有限的地区,结果表明,在增强的热量和减少水分平流期间对生态系统生产率的不利影响。这些时期通常与风力不成比例地来自大陆源区的风,以及那些逆风位置的正显热通量和负潜热通量异常。我们的结果强调了生态系统对荷载气候极端发生的脆弱性,并突出了后者对生态系统紊乱的时空繁殖的重要性。

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