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首页> 外文期刊>Journal of Climate >Variation of Hydrometeorological Conditions along a Topographic Transect in Northwestern Mexico during the North American Monsoon
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Variation of Hydrometeorological Conditions along a Topographic Transect in Northwestern Mexico during the North American Monsoon

机译:北美季风期间墨西哥西北部沿地形地带的水文气象条件的变化

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Relatively little is currently known about the spatiotemporal variability of land surface conditions during the North American monsoon, in particular for regions of complex topography. As a result, the role played by land-atmosphere interactions in generating convective rainfall over steep terrain and sustaining monsoon conditions is still poorly understood. In this study, the variation of hydrometeorological conditions along a large-scale topographic transect in northwestern Mexico is described. Thetransect field experiment consisted of daily sampling at 30 sites selected to represent variations in elevation and ecosystem distribution. Simultaneous soil and atmospheric variables were measured during a 2-week period in early August 2004. Transect observations were supplemented by a network of continuous sampling sites used to analyze the regional hydrometeorological conditions prior to and during the field experiment. Results reveal the strong control exerted by topography on the spatial and temporal variability in soil moisture, with distinct landscape regions experiencing different hydrologic regimes. Reduced variations at the plot and transect scale during a drydown period indicate that homogenization of hydrologic conditions occurred over thelandscape. Furthermore, atmospheric variables are clearly linked to surface conditions, indicating that heating and moistening of the boundary layer closely follow spatial and temporal changes in hydrologic properties. Land-atmosphere interactions at the basin scale (—100 km~2), obtained via a technique accounting for topographic variability, further reveal the role played by the land surface in sustaining high atmospheric moisture conditions, with implications toward rainfall generation during the North American monsoon.
机译:目前对北美季风期间,特别是复杂地形区域的地表条件的时空变化知之甚少。结果,人们对陆地-大气相互作用在陡峭地形上产生对流降雨和维持季风条件的作用仍知之甚少。在这项研究中,描述了墨西哥西北部大型地形断面的水文气象条件的变化。横断面实地实验包括每天在30个地点取样,这些地点代表海拔和生态系统分布的变化。在2004年8月上旬的2周时间内,同时测量了土壤和大气变量。在实地试验之前和期间,通过连续采样站点网络对横断面观测进行了补充,该网络用于分析区域水文气象条件。结果表明,地形对土壤水分的时空变化具有很强的控制作用,不同的景观区域经历了不同的水文状况。在干旱期间,样地和样带尺度的变化减少,表明水文条件的均质化发生在整个景观上。此外,大气变量显然与地表条件有关,表明边界层的加热和增湿紧密地跟随了水文特性的时空变化。通过解释地形变化的技术获得的流域尺度(-100 km〜2)的陆地-大气相互作用,进一步揭示了地表在维持高大气湿度条件中所起的作用,对北美期间降雨的产生有影响季风。

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