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Modeling the Effects of Global Climatic Change at the Ecotone of Boreal Larch Forest and Temperate Forest in Northeast China

机译:东北落叶松和温带森林过渡带全球气候变化影响的模拟

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摘要

The dynamics of the forest at the ecotone of the boreal forest and temperate forest in Northeast China were simulated using the adapted gap model BKPF under global climatic change (GFDL scenario) and doubled CO2 concentrations at 50 years in the future. The response of tree species and species with similar biological characteristics under global climate change and double CO2 concentrations were based on biophysical limits of the tree species in the area and their biological competition. The results showed that after 50 years the stand density and LAI (leaf area index) of the forest growing from a clear-cut would not be significantly different from those under current conditions. Stand productivity would increase about 7%, and stand aboveground biomass would increase 15%. However, the stand density of the current mature forest would be reduced by more than 20%. The stand would be dominated by Quercus mongolica Fisch., Populus davidiana Dode., Betula spp. and other broadleaved tree species, and Quercus mongolica would account for about 50% of the total density. The stand biomass would be reduced by more than 90%. Quercus mongolica would comprise about 57% of the total stand biomass. The stand productivity would not change significantly, but it would be comprised mainly of Quercus mongolica, Populus davidiana, Betula spp. The current stand height would decrease slightly. The stand LAI would decline dramatically, moreover, Quercus mongolica would comprise about 50% of the stand LAI.
机译:在全球气候变化(GFDL情景)和未来50年CO2浓度增加一倍的情况下,采用适应性缺口模型BKPF模拟了东北寒带和温带森林交界处的森林动态。在全球气候变化和CO2浓度倍增的情况下,树种和具有相似生物特征的树种的响应基于该地区树种的生物物理极限及其生物竞争。结果表明,经过50年的砍伐,森林的林分密度和LAI(叶面积指数)与当前条件下没有显着差异。林分生产力将增加约7%,而地上生物量将增加15%。但是,目前成熟林的林分密度将降低20%以上。该摊位将以蒙古栎,桦树,桦属为主。和其他阔叶树种,而蒙古栎将占总密度的约50%。林分生物量将减少90%以上。蒙古栎将占总林分生物量的约57%。林分生产力不会有明显变化,但主要由蒙古栎,山杨,桦属组成。当前的支架高度将略有降低。展位LAI将急剧下降,此外,蒙古栎将占展位LAI的约50%。

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  • 来源
    《Climatic Change》 |2002年第2期|77-97|共21页
  • 作者

    Xiongwen Chen;

  • 作者单位

    Laboratory of Quantitative Vegetation Ecology Chinese Academy of Sciences;

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  • 正文语种 eng
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