首页> 外文期刊>Norsk geografisk tidsskrift >Recent forest limit changes in south-east Norway: Effects of climate change or regrowth after abandoned utilisation
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Recent forest limit changes in south-east Norway: Effects of climate change or regrowth after abandoned utilisation

机译:挪威东南部近期森林极限变化:废弃利用后气候变化或再生长的影响

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The forest limits of south-east Norway have expanded to higher altitudes Two main processes aie believed to cause these changes: regrowth after abandonment of human utilisation and recent climate changes The article aims at separating the effects of these two processes on the upper forest limits and recent forest expansion Four datasets representing 161 5 km2 have been used: climate data, downscaled climate change scenario data, forest height growth, and four vegetation maps. The maps represent the years 1959 and 2001, potential natural vegetation (PNV), and a climate change scenario (CCS) The recent upper potential climatic and edaphic forest limit (UPCEFL) was used to define the potential for forest lcgrowth after the abandonment of human utilisation Forest height growth and climate data were then used to analyse any supplementary effect of recent climate change The projected future forest limits were based on the IPCC IS92a scenario for 2020-2049 The results show that raised forest limits and forest range expansion often attributed to recent climate change is rather the product of regrowth. a process that was climatically retarded from 1959 t6 1995 For the period 1995-2006, the data indicate a preliminary effect of climate change escalating the regrowth and probably pushing the future forest limits to higher lltitudes.
机译:挪威东南部的森林界限已扩大到更高的高度,据信造成这些变化的两个主要过程是:放弃人类利用后的再生长和最近的气候变化。本文旨在区分这两个过程对森林上限和森林上限的影响。最近的森林扩张已使用代表161 5 km2的四个数据集:气候数据,按比例缩小的气候变化情景数据,森林高度增长和四个植被图。这些地图分别代表1959年和2001年,潜在的自然植被(PNV)和气候变化情景(CCS)。最近的潜在气候和热带森林上限(UPCEFL)用于定义人类遗弃后森林的生长潜力。然后利用森林高度的增长和气候数据分析近期气候变化的任何补充影响。预计的未来森林限额基于2020-2049年IPCC IS92a方案。结果表明,森林限额提高和森林范围扩展通常归因于近期气候变化实际上是再生的产物。此过程在1959年6月至1995年期间由于气候而受阻。在1995-2006年期间,数据表明气候变化对森林的重新生长产生了初步影响,并可能将未来的森林限制推向更高的高度。

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