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首页> 外文期刊>Journal of Hydrology >The cumulative effects of forest disturbance and climate variability on streamflow components in a large forest-dominated watershed
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The cumulative effects of forest disturbance and climate variability on streamflow components in a large forest-dominated watershed

机译:大型森林主导流域中森林干扰与气候变异性的累积效应

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Assessing how forest disturbance and climate variability affect streamflow components is critical for watershed management, ecosystem protection, and engineering design. Previous studies have mainly evaluated the effects of forest disturbance on total streamflow, rarely with attention given to its components (e.g., base flow and surface runoff), particularly in large watersheds (1000 km(2)). In this study, the Upper Similkameen River watershed (1810 km(2)), an international watershed situated between Canada and the USA, was selected to examine how forest disturbance and climate variability interactively affect total streamflow, baseflow, and surface runoff. Baseflow was separated using a combination of the recursive digital filter method and conductivity mass balance method. Time series analysis and modified double mass curves were then employed to quantitatively separate the relative contributions of forest disturbance and climate variability to each streamflow component. Our results showed that average annual baseflow and baseflow index (baseflow/streamflow) were 113.3 +/- 35.6 mm year(-1) and 0.27 for 1954-2013, respectively. Forest disturbance increased annual streamflow, baseflow, and surface runoff of 27.7 +/- 13.7 mm, 7.4 +/- 3.6 mm, and 18.4 +/- 12.9 mm, respectively, with its relative contributions to the changes in respective streamflow components being 27.0 +/- 23.0%, 29.2 +/- 23.1%, and 25.7 +/- 23.4%, respectively. In contrast, climate variability decreased them by 74.9 +/- 13.7 mm, 17.9 +/- 3.6 mm, and 53.3 +/- 12.9 mm, respectively, with its relative contributions to the changes in respective streamflow components being 73.0 +/- 23.0%, 70.8 +/- 23.1% and 73.1 +/- 23.4%, respectively. Despite working in opposite ways, the impacts of climate variability on annual streamflow, baseflow, and surface runoff were of a much greater magnitude than forest disturbance impacts. This study has important implications for the protection of aquatic habitat, engin
机译:评估森林扰动和气候变异性如何影响流流量组件对于流域管理,生态系统保护和工程设计至关重要。以前的研究主要评估了森林扰动对总流出的影响,很少注意其组件(例如,基础流动和表面径流),特别是在大流域(& 1000公里(2))中。在这项研究中,Similkameen River流域(1810公里(2)次)是在加拿大和美国之间的国际流域,选择了森林扰动和气候变化如何相互作用地影响总流流,源泉和表面径流。使用递归数字滤波方法和电导率质量平衡方法的组合分离基流。然后采用时间序列分析和改进的双质量曲线来定量地将森林扰动和气候变化的相对贡献与每个流流量分别分开。我们的研究结果表明,1954 - 2013年的平均年度基础流量和基础流量指数(Basfflow / Stream流程)分别为113.3 +/- 35.6 mm(-1)和0.27。森林骚扰分别增加了27.7 +/- 13.7 mm,7.4 +/- 3.6 mm和18.4 +/- 12.9 mm的年度流式流量,基础流程和表面径流,其相对贡献对各个流流量组件的变化为27.0 + / - 23.0%,29.2 +/- 23.1%,分别为25.7 +/- 23.4%。相比之下,气候变异性分别将它们减少74.9 +/- 13.7 mm,17.9 +/- 3.6 mm和53.3 +/- 12.9 mm,其相对贡献对各个流流量组件的变化为73.0 +/- 23.0% ,70.8 +/- 23.1%和73.1 +/- 23.4%。尽管以相反的方式工作,但气候变异性对年流流量,碱流和表面径流的影响比森林扰动影响更大。本研究对保护水生栖息地,引擎有重要意义

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