斯堪的纳维亚山脉中部气候对苏格兰松树径向生长影响的转变与 20 世纪 70 年代的明显过渡

IF 3 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Climate Pub Date : 2024-07-04 DOI:10.3390/cli12070097
Ulrika Gomm, Emilia Bromfält, Selma Kling, Qiong Zhang
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引用次数: 0

摘要

树环宽度所反映的树木径向生长情况是过去气候条件的重要代用指标,有助于深入了解百年和千年时间尺度上的气候动态。传统上,在斯堪的纳维亚山脉中部的高海拔和高纬度地区,夏季气温,尤其是七月份的气温,对苏格兰松树的径向生长有很大影响。本研究旨在重新评估斯堪的纳维亚山脉中部耶姆特兰地区苏格兰松径向生长的气候决定因素,并结合考虑温度、降水和积雪深度的精细分析,以及它们与树木生长随时间变化的相关性。本研究利用动态移动窗口热图相关性分析,重新审视苏格兰松树年表,探索气候对径向生长的不断演变的影响。这种方法可以识别限制生长因素的时间变化。我们观察到 20 世纪 70 年代出现了一个明显的转变,即在生长季节的开始和结束时,水分供应量而不是温度成为径向生长的关键限制因素。这一转变反映了 20 世纪后半叶全球树木生长对温度升高的反应不断减弱的大趋势,凸显了当前气候变化对森林生态系统的重大影响。研究结果突出表明,有必要制定适应性森林管理策略,考虑气候对树木生长影响的动态变化。此外,我们的研究有助于人们更广泛地了解气候变化下的森林生长模式,对生态研究和森林管理具有重要意义。
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Shifts in Climatic Influences on Radial Growth of Scots Pine in the Central Scandinavian Mountains with an Evident Transition in the 1970s
Radial growth of trees, as reflected by tree ring width, serves as a vital proxy for past climate conditions, offering insights into climate dynamics over centennial and millennial time scales. Traditionally, in the high altitudes and latitudes of the central Scandinavian Mountains, summer temperatures, particularly in July, have significantly influenced the radial growth of Scots pine. This research aims to reassess the climatic determinants of Scots pine radial growth in Jämtland, central Scandinavian Mountains, by incorporating a refined analysis that considers temperature, precipitation, and snow depth, and their correlations with tree growth over time. Using a dynamic moving window heatmap correlation analysis, this study revisits a Scots pine chronology to explore the evolving climatic influences on radial growth. This approach allows for the identification of temporal shifts in growth-limiting factors. We observe a notable transition in the 1970s, marking a shift where water availability, rather than temperature, emerges as a critical limiting factor for radial growth at both the beginning and the end of the growing season. This shift is reflective of the broader global trend of decreasing tree growth response to increasing temperatures in the latter half of the 20th century, underscoring the significant impact of ongoing climate change on forest ecosystems. The results highlight the necessity for adaptive forest management strategies that consider the changing dynamics of climatic influences on tree growth. Furthermore, our study contributes to the broader understanding of forest growth patterns in the face of climate change, with substantial implications for ecological research and forest management.
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来源期刊
Climate
Climate Earth and Planetary Sciences-Atmospheric Science
CiteScore
5.50
自引率
5.40%
发文量
172
审稿时长
11 weeks
期刊介绍: Climate is an independent, international and multi-disciplinary open access journal focusing on climate processes of the earth, covering all scales and involving modelling and observation methods. The scope of Climate includes: Global climate Regional climate Urban climate Multiscale climate Polar climate Tropical climate Climate downscaling Climate process and sensitivity studies Climate dynamics Climate variability (Interseasonal, interannual to decadal) Feedbacks between local, regional, and global climate change Anthropogenic climate change Climate and monsoon Cloud and precipitation predictions Past, present, and projected climate change Hydroclimate.
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