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The Cumulative Effects of Forest Disturbance and Climate Variability on Streamflow in the Deadman River Watershed

机译:森林干扰和气候变化对戴德曼河流域径流的累积影响。

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Climatic variability and cumulative forest cover change are the two dominant factors affecting hydrological variability in forested watersheds. Separating the relative effects of each factor on streamflow is gaining increasing attention. This study adds to the body of literature by quantifying the relative contributions of those two drivers to the changes in annual mean flow, low flow, and high flow in a large forested snow dominated watershed, the Deadman River watershed (878 km 2 ) in the Southern Interior of British Columbia, Canada. Over the study period of 1962 to 2012, the cumulative effects of forest disturbance significantly affected the annual mean streamflow. The effects became statistically significant in 1989 at the cumulative forest disturbance level of 12.4% of the watershed area. The modified double mass curve and sensitivity-based methods consistently revealed that forest disturbance and climate variability both increased annual mean streamflow during the disturbance period (1989–2012), with an average increment of 14 mm and 6 mm, respectively. The paired-year approach was used to further investigate the relative contributions to low and high flows. Our analysis showed that low and high flow increased significantly by 19% and 58%, respectively over the disturbance period ( p 0.05). We conclude that forest disturbance and climate variability have significantly increased annual mean flow, low flow and high flow over the last 50 years in a cumulative and additive manner in the Deadman River watershed.
机译:气候变异性和累积森林覆盖率变化是影响森林流域水文变异性的两个主要因素。分离每个因素对流量的相对影响正在引起越来越多的关注。这项研究通过量化这两个驱动因素对一个以雪为主的大森林流域(戴德曼河流域(878 km 2))中年平均流量,低流量和高流量变化的相对贡献而增加​​了文献资料。不列颠哥伦比亚省,加拿大南部的内部。在1962年至2012年的研究期间,森林扰动的累积影响显着影响了年平均流量。在1989年,在流域面积的12.4%的累积森林扰动水平下,这种影响变得具有统计学意义。修改后的双质量曲线和基于灵敏度的方法一致地表明,在扰动时期(1989-2012年),森林扰动和气候变异性均增加了年平均流量,平均增量分别为14mm和6mm。配对年方法用于进一步研究低流量和高流量的相对贡献。我们的分析表明,在扰动期间,低流量和高流量分别显着增加了19%和58%(p <0.05)。我们得出的结论是,过去50年中,戴德曼河流域的森林扰动和气候变异性以累积和累加的方式显着增加了年平均流量,低流量和高流量。

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