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Parametric identification of a functional-structural tree growth model and application to beech trees (Fagus sylvatica)

机译:功能结构树生长模型的参数识别及其在山毛榉树中的应用(Fagus sylvatica)

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摘要

Functional-structural models provide detailed representations of tree growth and their application to forestry seems full of prospects. However, owing to the complexity of tree architecture, parametric identification of such models remains a critical issue. We present the GreenLab approach for modelling tree growth. It simulates tree growth plasticity in response to changes of their internal level of trophic competition, especially topological development and cambial growth. The model includes a simplified representation of tree architecture, based on a species-specific description of branching patterns. We study whether those simplifications allow enough flexibility to reproduce with the same set of parameters the growth of two observed understorey beech trees (Fagus sylvatica L.) of different ages in different environmental conditions. The parametric identification of the model is global, i.e. all parameters are estimated simultaneously, potentially providing a better description of interactions between sub-processes. As a result, the source-sink dynamics throughout tree development is retrieved. Simulated and measured trees were compared for their trunk profiles (fresh masses and dimensions of every growth units, ring diameters at different heights) and compartment masses of their order 2 branches. Possible improvements of this method by including topological criteria are discussed.
机译:功能结构模型提供了树木生长的详细表示,它们在林业中的应用似乎充满了前景。但是,由于树结构的复杂性,此类模型的参数识别仍然是一个关键问题。我们提出了GreenLab建模树木生长的方法。它模拟树木生长的可塑性,以响应其内部营养竞争水平的变化,尤其是拓扑发育和冈比亚生长。该模型基于分支模式的特定物种描述,包括树结构的简化表示。我们研究了这些简化是否允许足够的灵活性以相同的参数集在不同的环境条件下观察不同年龄的两棵下层山毛榉树(Fagus sylvatica L.)的生长。该模型的参数识别是全局的,即所有参数都同时估算,从而有可能更好地描述子流程之间的相互作用。结果,检索了整个树开发过程中的源库动态。比较模拟和测量的树木的树干轮廓(每个生长单位的新鲜质量和尺寸,不同高度的环直径)和其2阶树枝的车厢质量。讨论了通过包括拓扑准则对这种方法的可能改进。

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