首页> 外文期刊>Journal of the American Water Resources Association >UNDERSTANDING THE FACTORS THAT INFLUENCE HEADWATER STREAM FLOWS IN RESPONSE TO STORM EVENTS
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UNDERSTANDING THE FACTORS THAT INFLUENCE HEADWATER STREAM FLOWS IN RESPONSE TO STORM EVENTS

机译:理解影响风暴事件的流源水流的因素

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Headwater drainage features (first- to second-order streams) are the capillaries of the landscape that, among other things, moderate the timing and volumes of water available to the riparian and aquatic ecosystems. How these features respond to summer rainfall is poorly understood. We studied how geology and an index of land use/land cover influenced peak flows following rainfall events in 110 headwater stream sites that were studied over a four-month period during a drought year. Highest peak flows were observed in the most urbanized catchments and in poorly drained soils, but specific responses were variable depending on both geology and land disturbance. Redundancy analysis indicated that both surficial geology and land disturbance were important factors influencing peak flows under drought conditions. We conclude that responses of these headwater streams to individual storms during drought conditions are unpredictable from data collected using our methods, but increased peak flows were associated with increased urban and agricultural development, but mitigated by surficial geology. These findings demonstrate the challenges to accurately predict flow conditions in headwater streams during periods of extreme weather that concurrently have the greatest potential effect on biota. The combination of these challenges and importance of such events indicates the need to develop new approaches to study and manage these resources.
机译:源头排水特征(一到二阶流)是景观中的毛细血管,除其他因素外,它们缓和了河岸和水生生态系统可用水的时间和水量。这些功能如何响应夏季降雨还知之甚少。我们研究了在干旱年的四个月内研究的110个源头河水站点的降雨事件之后,地质和土地利用/土地覆盖率指数如何影响峰值流量。在城市化程度最高的集水区和排水不良的土壤中观测到最高的峰值流量,但是具体响应因地质和土地扰动而变化。冗余分析表明,表层地质和土地扰动都是影响干旱条件下洪峰流量的重要因素。我们得出的结论是,在干旱条件下,这些源头水流对单个暴雨的响应无法通过使用我们的方法收集的数据来预测,但是峰值流量的增加与城市和农业发展的增加相关,但由于地表地质的影响而减弱。这些发现证明了在极端天气期间准确预测源头水流的挑战,同时对生物区系具有最大的潜在影响。这些挑战与此类事件的重要性相结合,表明需要开发新的方法来研究和管理这些资源。

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