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Spatial extent of the North American Monsoon: Increased cross-regional linkages via atmospheric pathways

机译:北美季风的空间范围:通过大气途径增加的跨区域联系

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摘要

The North American monsoon is a key feature affecting summer climate over Southwestern North America. During the monsoon, evapotranspiration from the Southwest promotes transference of water to the atmosphere which is subsequently distributed across the continent - linking the SW to other regions via atmospheric hydrologic connectivity. However, the degree to which atmospheric connectivity redistributes monsoonal terrestrial moisture throughout the continent and its sensitivity to climate disturbances such as drought is uncertain. We tracked the trajectory of moisture evapotranspired within the semiarid Southwest during the monsoon season using a Lagrangian analytical model. Southwest moisture was advected north-east accounting for __15% of precipitation in adjacent Great Plains regions. During recent drought (2000-2003), this amount decreased by 45%. Our results illustrate that the spatial extent of the North American monsoon is larger than normally considered when accounting for hydrologic connectivity via soil moisture redistribution through atmospheric pathways.
机译:北美季风是影响北美西南部夏季气候的关键特征。在季风期间,西南部的蒸散作用促进了水向大气的转移,随后大气分布到整个大陆-通过大气水文连通性将西南部连接到其他地区。但是,大气连通性在整个大陆上重新分配季风性陆地水分的程度及其对气候干扰(例如干旱)的敏感性尚不确定。我们使用拉格朗日分析模型跟踪了季风季节西南半干旱地区内蒸散水分的轨迹。西南部的水分向东北方向移动,约占邻近大平原地区降水的15%。在最近的干旱期间(2000-2003年),这一数字下降了45%。我们的研究结果表明,北美季风的空间范围要比考虑通过大气途径通过土壤水分再分配进行水文连通性时考虑的范围要大。

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