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Recent trends and variability in river discharge across northern Canada

机译:加拿大北部河流排放的最新趋势和变化

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This study presents an analysis of the observed inter-annual variability and inter-decadal trends in river discharge across northern Canada for 1964-2013. The 42 rivers chosen for this study span a combined gauged area of 5.26 x 10(6) km(2) and are selected based on data availability and quality, gauged area and record length. Inter-annual variability in river discharge is greatest for the eastern Arctic Ocean (coefficient of variation, CV = 16 %) due to the Caniapiscau River diversion into the La Grande Riviere system for enhanced hydropower production. Variability is lowest for the study area as a whole (CV = 7 %). Based on the Mann-Kendall test (MKT), no significant (p > 0.05) trend in annual discharge from 1964 to 2013 is observed in the Bering Sea, western Arctic Ocean, western Hudson and James Bay, and Labrador Sea; for northern Canada as a whole, however, a statistically significant (p < 0.05) decline of 102.8 km(3) 25 yr(-1) in discharge occurs over the first half of the study period followed by a statistically significant (p < 0.05) increase of 208.8 km(3) 25 yr(-1) in the latter half. Increasing (decreasing) trends in river discharge to the eastern Hudson and James Bay (eastern Arctic Ocean) are largely explained by the Caniapiscau diversion to the La Grande Riviere system. Strong regional variations in seasonal trends of river discharge are observed, with overall winter (summer) flows increasing (decreasing, with the exception of the most recent decade) partly due to flow regulation and storage for enhanced hydropower production along the Hudson and James Bay, the eastern Arctic Ocean and Labrador Sea. Flow regulation also suppresses the natural variability of river discharge, particularly during cold seasons.
机译:这项研究对1964-2013年加拿大北部河流流量的年际变化和年代际趋势进行了分析。为这项研究选择的42条河流的总标称面积为5.26 x 10(6)km(2),并根据数据的可用性和质量,标定面积和记录长度进行选择。北冰洋东部的河流流量年际变化最大(变化系数,CV = 16%),这是因为Caniapiscau河被分流到La Grande Riviere系统中以提高水力发电能力。整个研究区域的变异性最低(CV = 7%)。根据Mann-Kendall检验(MKT),在白令海,北冰洋西部,哈德森西部和詹姆斯湾西部以及拉布拉多海,没有观察到1964年至2013年的年排放量的显着趋势(p> 0.05)。对于整个加拿大北部地区,在研究期的前半部分,出院时出现102.8 km(3)25 yr(-1)的统计学显着性下降(p <0.05),随后统计上显着(p <0.05) )在下半年增加208.8 km(3)25 yr(-1)。通往哈德逊河东部和詹姆斯湾(北冰洋东部)的河流流量增加(减少)趋势,很大程度上是由于Caniapiscau转移至La Grande Riviere系统造成的。在河流流量的季节性趋势中观察到强烈的区域差异,整个冬季(夏季)流量增加(最近十年除外)有所减少,部分原因是为了改善哈德逊河和詹姆斯湾沿岸的水力发电的流量调节和存储,北冰洋东部和拉布拉多海。流量调节还抑制了河流流量的自然变化,特别是在寒冷季节。

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