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首页> 外文期刊>Journal of forest research >The effects of stand structure on specific needle area in closed-canopy Chinese pine plantations.
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The effects of stand structure on specific needle area in closed-canopy Chinese pine plantations.

机译:林分结构对闭冠油松人工林特定针叶面积的影响。

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摘要

The specific leaf area (SLA) is an important variable reflecting the carbon gain strategy of tree growth, but the relationships between SLA and other environmental factors have not been studied extensively at the stand level. The aim of this study was to define the relationships between stand structure and SLA in order to improve the predictive value of SLA for forest management models. Various parameters of stand structure and specific needle area (SNA) were measured in 14 different even-aged and closed-canopy stands of Chinese pine (Pinus tabulaeformis Carr.). Correlation and regression analysis revealed several significant relationships between stand structure and SNA. Stand density exerted a significant effect on mean-canopy SNA (SNAmean). Stand density was also strongly correlated to mean-layer SNA (SNAL), especially at lower canopy layers. SNAL increased at lower canopy layers within each stand, and the increase was greater in higher density stands. Within the range of stand densities examined in this study, the SNAmean initially increased sharply with increasing stand density, but the rate of rise declined as the density increased. Finally, it reached stability when the stand density was above about 3,000 trees ha-1.
机译:比叶面积(SLA)是反映树木生长的碳增加策略的重要变量,但是在林分级别尚未广泛研究SLA与其他环境因素之间的关系。这项研究的目的是定义林分结构与SLA之间的关系,以提高SLA对森林经营模型的预测价值。在14个不同的平松和闭冠层油松(Pinus tabulaeformis Carr。)中,测量了林分结构和特定针叶面积(SNA)的各种参数。相关性和回归分析揭示了林分结构与SNA之间的一些重要关系。林分密度对平均冠层SNA(SNA mean )有显着影响。林分密度也与平均层SNA(SNA L )密切相关,尤其是在较低的树冠层。在每个林分的较低冠层,SNA L 增加,而在较高密度的林分中,SNA L 的增加更大。在本研究调查的林分密度范围内,SNA <均值> 最初随着林分密度的增加而急剧增加,但上升速度随密度的增加而下降。最终,当林分密度超过约3,000棵树 -1 时达到稳定。

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