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Climate Response of Tree Radial Growth at Different Timescales in the Qinling Mountains

机译:秦岭山区不同时间尺度树木径向生长的气候响应

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摘要

The analysis of the tree radial growth response to climate is crucial for dendroclimatological research. However, the response relationships between tree-ring indices and climatic factors at different timescales are not yet clear. In this study, the tree-ring width of Huashan pine (Pinus armandii) from Huashan in the Qinling Mountains, north-central China, was used to explore the response differences of tree growth to climatic factors at daily, pentad (5 days), dekad (10 days) and monthly timescales. Correlation function and linear regression analysis were applied in this paper. The tree-ring width showed a more sensitive response to daily and pentad climatic factors. With the timescale decreasing, the absolute value of the maximum correlation coefficient between the tree-ring data and precipitation increases as well as temperature (mean, minimum and maximum temperature). Compared to the other three timescales, pentad was more suitable for analysing the response of tree growth to climate. Relative to the monthly climate data, the association between the tree-ring data and the pentad climate data was more remarkable and accurate, and the reconstruction function based on the pentad climate was also more reliable and stable. We found that the major climatic factor limiting Huashan pine growth was the precipitation of pentads 20–35 (from April 6 to June 24) rather than the well-known April–June precipitation. The pentad was also proved to be a better timescale for analysing the climate and tree growth in the western and eastern Qinling Mountains. The formation of the earlywood density of Chinese pine (Pinus tabulaeformis) from Shimenshan in western Qinling was mainly affected by the maximum temperature of pentads 28–32 (from May 16 to June 9). The maximum temperature of pentads 28–33 (from May 16 to June 14) was the major factor affecting the ring width of Chinese pine from Shirenshan in eastern Qinling.
机译:树木径向生长对气候响应的分析对于树状气候学研究至关重要。然而,在不同的时间尺度上,年轮指数与气候因子之间的响应关系尚不清楚。在这项研究中,利用中国中北部秦岭华山的华山松(Pinus armandii)的年轮宽度,研究了每天五元组(5天)树木生长对气候因子的响应差异, dekad(10天)和每月时间表。本文应用了相关函数和线性回归分析。树木的年轮宽度显示出对每日和五元气候因素的更敏感的响应。随着时间尺度的减小,年轮数据与降水之间最大相关系数的绝对值随温度(平均,最低和最高温度)的增加而增加。与其他三个时标相比,五单元组更适合分析树木生长对气候的响应。相对于月度气候数据,年轮数据与五元组气候数据之间的关联更加显着和准确,基于五元组气候的重建函数也更加可靠,稳定。我们发现,限制华山松生长的主要气候因素是20-35岁五单元组的降水(4月6日至6月24日),而不是众所周知的4-6月降水。五角星也被证明是分析秦岭西部和东部山区气候和树木生长的更好时标。西秦岭石门山的油松(Pinus tabulaeformis)早木密度的形成主要受到五角组最高温度28-32(从5月16日至6月9日)的影响。五单元组的最高温度(5月16日至6月14日)是影响秦岭东部石人山油松环宽的主要因素(5月16日至6月14日)。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Changfeng Sun; Yu Liu;

  • 作者单位
  • 年(卷),期 2011(11),8
  • 年度 2011
  • 页码 e0160938
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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