树木年轮宽度及其与环境参数的相互关系:匈牙利中部的案例研究

Zsuzsanna Ladányi, V. Blanka
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引用次数: 2

摘要

树木年轮宽度受多种内外部因素的影响,其中气候是最主要的影响因素之一,主要受降水和温度变化的条件和模式的影响。该研究旨在分析在过去几十年中由于气候变化和人类干预而面临水资源短缺的景观中树木年轮宽度与主要环境参数之间的相互关系。对苏格兰松(Pinus sylvestris)、刺槐(Robinia pseudoacacia)和白杨(Populus alba)人工林进行采样,以揭示它们对气候强迫和水资源短缺(不同的水分可用性)的暴露。将计算得到的环宽指数与气候参数和干旱指数进行了相关性和相似性分析。评估树木年轮敏感性,揭示缺水对年轮生长的影响。分析了显著性水平和平均敏感性与近几十年水文变化的空间重叠,揭示了调查样本可能存在的空间差异。在研究区(南多瑙河- tisza断裂带),干旱和深层地下水位对树木生长均有影响。环宽的显著减小与调查的干旱指数确定的干旱年相对应。气候参数与年轮宽度的关系随立地条件的变化而存在空间差异。水分有效度最低的地区相关系数最高。在连续几十年的对比中,环宽敏感性评价显示,除水分有效度较好的样品外,敏感性呈增加趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tree-Ring Width And Its Interrelation With Environmental Parameters: Case Study In Central Hungary
Abstract Tree ring width is influenced by several internal and external factors, among which climate became one of the most dominant due to the altering conditions and patterns of precipitation and temperature. The study aims to analyse the interrelationship between tree ring-width and the dominant environmental parameters in a landscape exposed to water scarcity in the past decades due to climate change and human interventions. Scots pine (Pinus sylvestris), black locust (Robinia pseudoacacia) and white poplar (Populus alba) plantations were sampled to reveal their exposure to climatic forcing and water scarcity (different water availability). Correlation and similarity analysis were carried out to compare the calculated ring-width indices to climatic parameters and aridity indices. Tree ring sensitivity was assessed to reveal the impact of water scarcity on yearly ring-growth. Spatial overlapping of significance levels and mean sensitivity with the hydrological changes of the past decades were evaluated to reveal presumable spatial differences of the investigated samples. In the study area (South Danube-Tisza Interfluve) droughts and the deep groundwater table had both impacts on tree growth. The spectacular decrease of ring-width corresponds to the drought years determined by the investigated aridity indices. The relationship between the climate parameters and the ring-widths varies spatially with the changing site conditions. The highest level of correlation coefficients was experienced in areas with the lowest level of water availability. Ring-width sensitivity assessments showed an increasing tendency of sensitivity when comparing the consecutive decades, except for samples with favorable water availability.
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