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首页> 外文期刊>The Cryosphere Discussions >Climate change and Northern Hemisphere lake and river ice phenology from 1931–2005
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Climate change and Northern Hemisphere lake and river ice phenology from 1931–2005

机译:1931 - 2005年的气候变化和北半球湖和河冰工程

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At high latitudes and altitudes one of the main controls on hydrological and biogeochemical processes is the breakup and freeze-up of lake and river ice. This study uses 3510 time series from across 678 Northern Hemisphere lakes and rivers to explore historical patterns in lake and river ice phenology across five overlapping time periods (1931–1960, 1946–1975, 1961–1990, 1976–2005, and 1931–2005). These time series show that the number of annual open-water days increased by 0.63?d per decade from 1931–2005 across the Northern Hemisphere, with trends for breakup and, to a lesser extent, freeze-up closely correlating with regionally averaged temperature. Breakup and freeze-up trends display a spatiotemporally complex evolution and reveal considerable caveats with interpreting the implications of ice phenology changes at lake and river sites that may only have breakup or freeze-up data, rather than both. These results provide an important contribution by showing regional variation in ice phenology trends through time that can be hidden by longer-term trends. The overlapping 30-year time periods also show evidence for an acceleration in warming trends through time. Understanding the changes on both long- and short-term timescales will be important for determining the causes of this change, the underlying biogeochemical processes associated with it, and the wider climatological significance as global temperatures rise.
机译:在高纬度和高度的水文和生物地球化学过程中的主要控制之一是湖泊和河冰的分手和冻结。本研究采用了3510次北半球湖泊和河流的3510次序列,探讨了湖泊和河流攀岩的历史模式,横跨五个重叠的时间(1931-1960,1946-1975,1961-1990,1976-2005和1931-2005 )。这些时间序列显示,每年从1931 - 2005年增加0.63次,从北半球越来越多地增加了0.63℃,趋势与较小程度,冻结与区域平均温度密切相关。分手和冻结趋势展示了一种时尚复杂的演变,并揭示了可观的警告,以解释湖泊和河流网站的冰候变化的影响,这些冰似的似乎可能只有冻结或冻结数据,而不是两者。这些结果通过在可能被长期趋势隐藏的时间内显示冰候趋势的区域变异,提供了重要贡献。重叠的30年期间也显示了通过时间加速趋势的依据。理解长期和短期时间尺度的变化对于确定这种变化的原因是重要的,与其相关的潜在生物地球化学过程以及随着全球气温升高的更广泛的气候学意义。

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