Dynamic coupling of allometric ratios to a process-based forest growth model for estimating the impacts of stand density changes

IF 3 2区 农林科学 Q1 FORESTRY Forestry Pub Date : 2020-10-06 DOI:10.1093/forestry/cpaa002
R. Grote, D. Kraus, W. Weis, R. Ettl, A. Göttlein
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引用次数: 12

Abstract

Process-based models are increasingly applied for simulating long-term forest developments in order to capture climate change impacts and to investigate suitable management responses. Regarding dimensional development, however, allometric relations such as the height/diameter ratio, branch and coarse root fractions or the dependency of crown dimension on stem diameter often do not account for environmental influences. While this may be appropriate for even-aged, monospecific forests, serious biases can be expected if stand density or forest structure changes rapidly. Such events occur in particular when forests experience disturbances such as intensive thinning or during early development stages of planted or naturally regenerated trees. We therefore suggest a calculation of allometric relationships that depends primarily on neighbourhood competition. Respective equations have been implemented into a physiology-based ecosystem model that considers asymmetric competition by explicit simulation of resource acquisition and depletion per canopy layer. The new implementation has been tested at two sites in Germany where beech (Fagus sylvatica) saplings have either been planted below a shelterwood of old spruces (Picea abies) or grown under clear-cut conditions. We show that the modified model is able to realistically describe tree development in response to stand density changes and is able to represent regeneration growth beneath a gradually decreasing overstorey of mature trees. In particular, the model could represent the faster crown size development in saplings until full ground coverage is established and a faster height growth afterwards. The effect enhances leaf area and thus assimilation per tree and increases carbon availability for stem growth at early development stages. Finally, the necessity to consider dynamic allometric relations with respect to climate change impacts is discussed, and further improvements are suggested.
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异速生长比与基于过程的森林生长模型的动态耦合,用于估算林分密度变化的影响
基于过程的模式越来越多地应用于模拟长期森林发展,以便捕捉气候变化的影响并调查适当的管理对策。然而,在尺寸发展方面,异速生长关系,如高径比、分枝和粗根比例或冠维对茎粗的依赖关系往往不能考虑环境的影响。虽然这可能适用于年龄均匀的单一森林,但如果林分密度或森林结构迅速变化,则可能出现严重偏差。当森林遭受诸如密集间伐等干扰或在种植或自然再生树木的早期发育阶段时,尤其会发生这种事件。因此,我们建议计算主要取决于邻居竞争的异速生长关系。各自的方程已被应用到一个基于生理学的生态系统模型中,该模型通过明确模拟每个冠层的资源获取和消耗来考虑不对称竞争。新的实施方案已经在德国的两个地点进行了测试,在那里,山毛榉(Fagus sylvatica)树苗要么种植在老云杉(Picea abies)的防护林下面,要么在明确的条件下生长。结果表明,修正后的模型能够真实地描述林分密度变化对树木发育的响应,并能反映成熟树木覆盖度逐渐减少的情况下的更新生长。该模型能较好地反映树苗在完全覆盖地面之前树冠尺寸的快速发展和树冠高度的快速增长。这种效应增加了叶面积,从而增加了每棵树的同化,并增加了早期发育阶段茎生长的碳有效性。最后,讨论了考虑气候变化影响的动态异速变化关系的必要性,并提出了进一步改进的建议。
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来源期刊
Forestry
Forestry 农林科学-林学
CiteScore
6.70
自引率
7.10%
发文量
47
审稿时长
12-24 weeks
期刊介绍: The journal is inclusive of all subjects, geographical zones and study locations, including trees in urban environments, plantations and natural forests. We welcome papers that consider economic, environmental and social factors and, in particular, studies that take an integrated approach to sustainable management. In considering suitability for publication, attention is given to the originality of contributions and their likely impact on policy and practice, as well as their contribution to the development of knowledge. Special Issues - each year one edition of Forestry will be a Special Issue and will focus on one subject in detail; this will usually be by publication of the proceedings of an international meeting.
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