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Snowpacks decrease and streamflows shift across the eastern US as winters warm
DOI:10.1016/j.scitotenv.2021.148483.png)
摘要
En 中文
Climate change is increasing winter temperatures across the planet, altering snowmelt hydrology. This study addresses a gap in snow research in non-alpine areas by examining changes to snow and winter and spring streamflow across most of the eastern US using daily observations from weather stations and stream gages from water years 1960-2019. These daily data were aggregated across drainage basins and classified winters with similar temperatures; differences between winters and both seasonal and annual trends were statistically quantified. Winters were classified as warm or cool in each drainage basin relative to the 60-year mean; analysis of the data indicates that warm winters occur more frequently in recent decades from an average of 0.39 to 3.96 warm winters/decade from the 1960's to the 2010's respectively. Those classifications were then used to examine changes in snowpack over the same period, which shows that warmer winters have on average 50.1 cm less annual snowfall, a reduced maximum snowpack depth by 14.4 cm, and 34 more bare ground days. These changes correlate with shifts to higher winter streamflows as well as peak basin yields that are 0.02 cm lower and occur three days earlier in warm winters. In addition to altered soil moisture and stream ecosystem dynamics, these snow and streamflow changes may have negative infrastructure and economic implications including impacts to winter tourism and agriculture. (c) 2021 Elsevier B.V. All rights reserved.
Keyword:
Snowmelt hydrology
Eastern United States
Climate change
Non-alpine snow
Spring streamflow
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期刊
IF:
8
论文数:
7.1W
被引数:
46.4W
机构
引用论文
Changing snow depth in the Great Lakes basin (USA): Implications and trends大湖流域 (美国) 的雪深变化: 影响和趋势
ANTHROPOCENE
IF3.9
Influence of temperature and precipitation variability on near-term snow trends
CLIMATE DYNAMICS
IF3.7

