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Soil moisture and its role in growth-climate relationships across an aridity gradient in semiarid Pinus halepensis forests

机译:半干旱松林半干旱区土壤水分及其在干旱梯度生长与气候关系中的作用

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摘要

In Mediterranean areas with limited availability of water, an accurate knowledge of growth response to hydro-logical variables could contribute to improving management and stability of forest resources. The main goal of this study is to assess the temporal dynamic of soil moisture to better understand the water-growth relationship of Pinus halepensis forests in semiarid areas. The estimates of modelled soil moisture and measured tree growth were used at four sites dominated by afforested Pinus halepensis Mill, in south-eastern Spain with 300 to 609 mm mean annual precipitation. Firstly, dendrochronological samples were extracted and the widths of annual tree rings were measured to compute basal area increments (BAI). Secondly, soil moisture was estimated over 20 hy-drological years (1992-2012) by means of the HYDROBAL ecohydrological model. Finally, the tree growth was linked, to mean monthly and seasonal temperature, precipitation and soil moisture. Results depict the effect of soil moisture on growth (BAI) and explain 69-73% of the variance in semiarid forests, but only 51% in the subhu-mid forests. This highlights the fact that that soil moisture is a suitable and promising variable to explain growth variations of afforested Pinus halepensis in semiarid conditions and useful for guiding adaptation plans to respond pro-actively to water-related global challenges.
机译:在水资源有限的地中海地区,对水文变量对生长响应的准确了解可以有助于改善森林资源的管理和稳定性。这项研究的主要目的是评估土壤水分的时空动态,以更好地了解半干旱地区的樟子松林与水的生长关系。在西班牙东南部绿化的Pinus halepensis Mill占主导地位的四个地点(平均年降水量300至609 mm)使用了模型土壤湿度和测得的树木生长的估算值。首先,提取树木年代学样本,并测量年轮的宽度,以计算基础面积增量(BAI)。其次,利用HYDROBAL生态水文模型估算了20个水文年(1992-2012年)的土壤湿度。最后,树木的生长联系在一起,意味着月度和季节温度,降水量和土壤湿度。结果描述了土壤水分对生长(BAI)的影响,并解释了半干旱森林中69-73%的变异,而亚中部森林中只有51%的变异。这凸显了这样一个事实,即土壤湿度是一个合适的且很有前途的变量,可以用来解释半干旱条件下造林的哈尔滨松的生长变化,并且对于指导适应计划积极应对与水相关的全球性挑战非常有用。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|982-990|共9页
  • 作者单位

    MEM 'Ramon Margalef', University of Alicante, Apdo. 99,03080 Alicante, Spain ,University of Alicante, Department of Ecology, Apdo. 99,03080 Alicante, Spain;

    University of Alicante, Department of Ecology, Apdo. 99,03080 Alicante, Spain;

    University of Alicante, Department of Ecology, Apdo. 99,03080 Alicante, Spain;

    University of Alicante, Department of Ecology, Apdo. 99,03080 Alicante, Spain ,University of Zaragoza, Department of Geography and Regional Planning - IUCA, Zaragoza, Spain;

    University of Zaragoza, Department of Geography and Regional Planning - IUCA, Zaragoza, Spain;

    MEM 'Ramon Margalef', University of Alicante, Apdo. 99,03080 Alicante, Spain ,University of Alicante, Department of Ecology, Apdo. 99,03080 Alicante, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dendrochronology; Aleppo pine; Ecohydrological model; HYDROBAL; Soil water content;

    机译:树木年代学;阿勒颇松;生态水文模型;水力发电土壤水分;

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