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首页> 外文期刊>Geophysical Research Letters >Temporal controls on global dust emissions: The role of surface gustiness
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Temporal controls on global dust emissions: The role of surface gustiness

机译:全球粉尘排放的时间控制:表面阵风的作用

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摘要

Topographic depressions serve as the key spatial control on large global dust sources. In contrast, the temporal control on these hotspots has remained elusive. We provide the first global observational evidence that the annual cycle of emissions from dust hotspots is determined by an erosivity feature in the form of wind gustiness. We use TOMS AI and an aridity index to define 131 global dust hotspots. The correlation between the annual cycle of hotspot dust and the annual cycle of gustiness is 70% stronger than the corresponding correlation with wind. The mean significant correlation with wind ( n = 106 hotspots) is 0.37 ( sigma = 0.24) and the mean of significant correlation ( n = 118 hotspots) with gustiness is 0.63 ( sigma = 0.12). Whereas most model simulations of dust have relied on the broadscale wind, gustiness holds overwhelmingly more power in explaining the annual cycle of dust emissions from global dust hotspots.
机译:地形凹陷是全球大型粉尘源的关键空间控制。相反,在这些热点上的时间控制仍然难以捉摸。我们提供了第一个全球性的观测证据,即尘埃热点的年度排放周期是由风速形式的侵蚀特征决定的。我们使用TOMS AI和干旱指数定义了131个全球尘埃热点。热点尘埃的年循环与阵风的年循环之间的相关性比与风的相关性强70%。与风的平均显着相关性(n = 106个热点)为0.37(sigma = 0.24),与阵风的显着相关性(n = 118个热点)与0.63(sigma = 0.12)。尽管大多数尘埃模型模拟都依赖于大范围的风,但在解释全球尘埃热点每年的尘埃排放周期时,阵风具有绝对优势。

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