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Flash Flood Dynamics And Composition In A Semiarid Mountain Watershed

机译:半干旱山区流域的山洪暴发动力学与组成

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Flash flood hydrographs were examined using water stable isotopes (deuterium and oxygen) and a plug-flow lumped catchment model to assess the origin and routing processes of flood water in a semiarid basin in southwestern United States. Precipitation and stream water were sampled during storm and flood conditions at high and low elevations. Isotope mixing relationships readily determined the predominance of three sources for the representative summer monsoon events: high elevation precipitation from two major subbasins and base flow. Each flood progressed through a series of source water contributions, as indicated by several segments of linear mixing between these end-members. We developed a plug-flow lumped catchment model to test possible governing processes for specific watershed and forcing conditions. Results suggest two main findings: First, these flood events were generated primarily from event water runoff in high elevations that mixed at the flood bore with pre-event base flow resident in the stream. The power, speed, and turbulence of the flood bore cause it to mix with, ride atop and push the resident in-stream water in the front of the rising limb. Second, the timing and volume of flood waves from subbasins are identified by their combined isotopic signature at the basin outlet; this approach may provide an effective mesoscale constraint for rainfall-runoff models.
机译:使用水稳定同位素(氘和氧气)和塞流集总集水模型检查了山洪洪水水位图,以评估美国西南半干旱盆地的洪水起源和演进过程。在高海拔和低海拔的暴雨和洪水条件下对降水和溪流水进行了采样。同位素混合关系很容易确定了代表夏季季风事件的三种来源的主要来源:两个主要子盆地的高海拔降水和基流。每次洪水都是通过一系列源水贡献而进行的,如这些末端构件之间的线性混合的若干段所示。我们开发了一种塞流集总集水模型,以测试特定分水岭和强迫条件下可能的治理过程。结果表明有两个主要发现:首先,这些洪水事件主要是由高海拔的事件水径流产生的,这些径流在洪水洞处与流中的事前基流混合在一起。洪水洞的力量,速度和湍流使它与之混合,漂浮并推向上游,将常驻的溪流中的水推入上升的肢体的前端。其次,通过流域出口处的同位素同位素特征识别来自亚盆地的洪水波的时间和数量。这种方法可以为降雨径流模型提供有效的中尺度约束。

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