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P2C2: Testing for the Physical Origin of Tree-Ring Divergence

P2C2: Testing for the Physical Origin of Tree-Ring Divergence
P2C2:年轮分歧的物理起源测试
批准号:
1405053
负责人:
Alexander Stine
金额:
$28.47万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-01 至 2018-12-31

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中文摘要
翻译
来自树木年轮的记录对地表温度的重建做出了独特的贡献,因为它们在陆地上分布均匀,具有年度分辨率,并且可以追溯到几个世纪甚至几千年前。 基于树木年轮生长的重建的解释是复杂的潜在损失的信息时,原始的树木年轮观测结合到年表,并通过各种气候对树木年轮生长的影响。这项研究测试的影响,去趋势的方法和多变量气候控制的树木年轮记录在整个北极使用档案数据和新开发的高纬度年表。将模拟导致基于树木年轮的气候重建的过程,从气候对树木生长的影响开始,并通过采样和年表建设取得进展。然后,这个框架将被用来测试假设的气候过程和方法的方法对由此产生的年表的影响,把特别注意的影响去趋势和光的可用性对气候重建。还将从高纬度地点收集新的树木年轮核心,以测试光照环境的小规模变化对树木年轮生长的影响。该项目及其相关的方法学进展将提高对基于树木年轮的气候代理的理解,并改善气候重建。在项目过程中产生的代码和数据将以电子方式提供。资金还将支持研究,教育和指导研究生和本科生在旧金山弗朗西斯科州立大学。
英文摘要
Records derived from tree rings make a unique contribution to reconstructions of surface temperature because they are well-distributed on land, have annual resolution, and extend back centuries or even millennia. Interpretation of reconstructions based on tree-ring growth is complicated by the potential loss of information when raw tree-ring observations are combined into chronologies, and by the variety of climate influences on tree-ring growth. This research tests for the influence of detrending methodology and multivariate climate control on tree-ring records across the Arctic using both archival data and newly developed high-latitude chronologies. The process leading to tree-ring based climate reconstructions will be modeled, starting with climate influences on tree growth and progressing through sampling and chronology construction. This framework will then be used to test hypotheses about the influence of climate processes and methodological approaches on the resulting chronologies, placing particular attention to the effects of detrending and light availability on climate reconstructions. New tree-ring cores from high-latitude sites will also be collected in order to test for an influence of small-scale variability in the light environment on tree-ring growth. This project and its associated methodological advances will improve understanding of tree-ring based climate proxies and lead to improved climate reconstructions. Codes and data generated in the course of the project will be made publically available. Funding will also support the research, education, and mentoring of graduate and undergraduate students at San Francisco State University.
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Collaborative Research: P2C2--Does Liebig's Law Allow for Capturing More Signal from the Forest?
  • 批准号:
    1903674
  • 项目类别:
    Standard Grant
  • 资助金额:
    $22.34万
  • 财政年份:
    2019
  • 负责人:
    Alexander Stine
  • 依托单位:
海外基金