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Tropical surface temperature response to vegetation cover changes and the role of drylands

机译:热带地表温度对植被覆盖变化的响应和旱地的作用

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Abstract Vegetation cover creates competing effects on land surface temperature: it typically cools through enhancing energy dissipation and warms via decreasing surface albedo. Global vegetation has been previously found to overall net cool land surfaces with cooling contributions from temperate and tropical vegetation and warming contributions from boreal vegetation. Recent studies suggest that dryland vegetation across the tropics strongly contributes to this global net cooling feedback. However, observation‐based vegetation‐temperature interaction studies have been limited in the tropics, especially in their widespread drylands. Theoretical considerations also call into question the ability of dryland vegetation to strongly cool the surface under low water availability. Here, we use satellite observations to investigate how tropical vegetation cover influences the surface energy balance. We find that while increased vegetation cover would impart net cooling feedbacks across the tropics, net vegetal cooling effects are subdued in drylands. Using observations, we determine that dryland plants have less ability to cool the surface due to their cooling pathways being reduced by aridity, overall less efficient dissipation of turbulent energy, and their tendency to strongly increase solar radiation absorption. As a result, while proportional greening across the tropics would create an overall biophysical cooling feedback, dryland tropical vegetation reduces the overall tropical surface cooling magnitude by at least 14, instead of enhancing cooling as suggested by previous global studies.
机译:摘要 植被覆盖对地表温度产生竞争效应:它通常通过增强能量耗散来冷却,并通过降低地表反照率来变暖。先前已发现全球植被对整体净冷却的陆地表面有净冷却作用,温带和热带植被的降温贡献以及北方植被的变暖贡献。最近的研究表明,热带地区的旱地植被对这种全球净降温反馈有很大贡献。然而,基于观测的植被-温度相互作用研究在热带地区受到限制,特别是在其广泛的旱地。理论上的考虑也对旱地植被在低水可用率下强烈冷却地表的能力提出了质疑。在这里,我们利用卫星观测来研究热带植被覆盖如何影响地表能量平衡。我们发现,虽然植被覆盖率的增加会给整个热带地区带来净降温反馈,但旱地的净植被降温效应却减弱了。通过观测,我们确定旱地植物冷却地表的能力较弱,因为它们的冷却途径因干旱而减少,湍流能量的整体耗散效率较低,并且它们倾向于强烈增加太阳辐射吸收。因此,虽然整个热带地区的成比例绿化会产生整体生物物理冷却反馈,但旱地热带植被将整体热带地表冷却幅度降低至少14%,而不是像以前的全球研究所建议的那样增强冷却。

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