globalchange  > 过去全球变化的重建
DOI: 10.1371/journal.pone.0171928
论文题名:
Climate Change Across Seasons Experiment (CCASE): A new method for simulating future climate in seasonally snow-covered ecosystems
作者: Pamela H. Templer; Andrew B. Reinmann; Rebecca Sanders-DeMott; Patrick O. Sorensen; Stephanie M. Juice; Francis Bowles; Laura E. Sofen; Jamie L. Harrison; Ian Halm; Lindsey Rustad; Mary E. Martin; Nicholas Grant
刊名: PLOS ONE
ISSN: 1932-6203
出版年: 2017
发表日期: 2017-2-16
卷: 12, 期:2
语种: 英语
英文关键词: Seasons ; Ecosystems ; Winter ; Forest ecology ; Climate change ; Forests ; Snow ; Trees
英文摘要: Climate models project an increase in mean annual air temperatures and a reduction in the depth and duration of winter snowpack for many mid and high latitude and high elevation seasonally snow-covered ecosystems over the next century. The combined effects of these changes in climate will lead to warmer soils in the growing season and increased frequency of soil freeze-thaw cycles (FTCs) in winter due to the loss of a continuous, insulating snowpack. Previous experiments have warmed soils or removed snow via shoveling or with shelters to mimic projected declines in the winter snowpack. To our knowledge, no experiment has examined the interactive effects of declining snowpack and increased frequency of soil FTCs, combined with soil warming in the snow-free season on terrestrial ecosystems. In addition, none have mimicked directly the projected increase in soil FTC frequency in tall statured forests that is expected as a result of a loss of insulating snow in winter. We established the Climate Change Across Seasons Experiment (CCASE) at Hubbard Brook Experimental Forest in the White Mountains of New Hampshire in 2012 to assess the combined effects of these changes in climate on a variety of pedoclimate conditions, biogeochemical processes, and ecology of northern hardwood forests. This paper demonstrates the feasibility of creating soil FTC events in a tall statured ecosystem in winter to simulate the projected increase in soil FTC frequency over the next century and combines this projected change in winter climate with ecosystem warming throughout the snow-free season. Together, this experiment provides a new and more comprehensive approach for climate change experiments that can be adopted in other seasonally snow-covered ecosystems to simulate expected changes resulting from global air temperature rise.
URL: http://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0171928&type=printable
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/25571
Appears in Collections:过去全球变化的重建
影响、适应和脆弱性
科学计划与规划
气候变化与战略
全球变化的国际研究计划
气候减缓与适应
气候变化事实与影响

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作者单位: Boston University, Department of Biology, Boston, Massachusetts, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;Research Designs, Lyme, New Hampshire, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;Boston University, Department of Biology, Boston, Massachusetts, United States of America;US Forest Service, Hubbard Brook Experimental Forest, Woodstock, New Hampshire, United States of America;US Forest Service, Hubbard Brook Experimental Forest, Woodstock, New Hampshire, United States of America;University New Hampshire, Institute for the Study of Earth, Oceans, and Space, Durham, New Hampshire, United States of America;US Forest Service, Hubbard Brook Experimental Forest, Woodstock, New Hampshire, United States of America

Recommended Citation:
Pamela H. Templer,Andrew B. Reinmann,Rebecca Sanders-DeMott,et al. Climate Change Across Seasons Experiment (CCASE): A new method for simulating future climate in seasonally snow-covered ecosystems[J]. PLOS ONE,2017-01-01,12(2)
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