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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >A 477-year dendrohydrological assessment of drought severity for Tsable River, Vancouver Island, British Columbia, Canada
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A 477-year dendrohydrological assessment of drought severity for Tsable River, Vancouver Island, British Columbia, Canada

机译:加拿大卑诗省温哥华岛Tsable River干旱严重程度的477年树状水文评估

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摘要

Summer streamflow droughts are becoming more severe in many watersheds on Vancouver Island, British Columbia, as a result of climate warming. Small coastal basins that are the primary water source for most communities and essential to Pacific salmon populations have been particularly affected. Because the most extreme naturally occurring droughts are rarely captured within short instrumental records water managers likely underestimate, and are unprepared for, worst-case scenario low flows. To provide a long-term perspective on recent droughts on Vancouver Island, we developed a 477-year long dendrohydrological reconstruction of summer streamflow for Tsable River based on a network of annual tree-ring width data. A novel aspect of our study is the use of conifer trees that are energy limited by spring snowmelt timing. Explaining 63% of the instrumental streamflow variability, to our knowledge the reconstruction is the longest of its kind in British Columbia. We demonstrate that targeting the summer streamflow component derived from snowmelt is powerful for determining drought-season discharge in hybrid runoff regimes, and we suggest that this approach may be applied to small watersheds in temperate environments that are not usually conducive to dendrohydrology. Our findings suggest that since 1520, 21 droughts occurred that were more extreme than recent ‘severe’ events like those in 2003 and 2009. Recent droughts are therefore not anomalous relative to the ~400-year pre-instrumental record and should be anticipated within water management strategies. In coming decades, worst-case scenario natural droughts compounded by land use change and climate change could result in droughts more severe than any since 1520. The influence of the Pacific Decadal Oscillation on instrumental and modelled Tsable River summer streamflow is likely linked to the enhanced role of snowmelt in determining summer discharge during cool phases. Copyright © 2015 John Wiley & Sons, Ltd.
机译:由于气候变暖,在不列颠哥伦比亚省温哥华岛的许多流域,夏季河流干旱正变得更加严重。小型沿海盆地是大多数社区的主要水源,对太平洋鲑鱼种群至关重要。由于最短时间内自然发生的干旱很少记录在短期仪器记录中,因此水管理人员可能会低估了这一情况,并且对于最坏情况下的低流量情况没有做好准备。为了提供对温哥华岛近期干旱的长期观察,我们根据年轮宽度数据网络开发了长达477年的Tsable河夏季水流树状水文重建技术。我们研究的一个新颖方面是使用针叶树,这些针叶树的能量受春季融雪时间的限制。解释了63%的仪器流量变化,据我们所知,重建是不列颠哥伦比亚省中最长的。我们证明,以融雪融化为源的夏季水流分量对于确定混合径流条件下的干旱季节排放很有效,并且我们建议这种方法可以应用于通常不利于水文水文的温带环境中的小流域。我们的发现表明,自1520年以来,发生了21次干旱,其干旱程度比最近的“严重”事件(如2003年和2009年)更为严重。因此,相对于约400年的仪器化前记录,最近的干旱并不异常,应在水中进行预测。管理策略。在未来几十年中,最坏情况下的自然干旱加上土地利用变化和气候变化可能导致比1520年以来的任何时候更为严重的干旱。太平洋年代际涛动对仪器化和模型化的Tsable River夏季水流的影响很可能与干旱加剧有关。融雪在确定凉爽季节夏季排放量方面的作用。版权所有©2015 John Wiley&Sons,Ltd.

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