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Model-based analysis of the influence of ecological processes on forest point pattern formation-A case study

机译:基于过程的生态过程对森林点格局形成的影响分析-以案例研究为例

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Many different spatio-temporal individual-based models (IBM) for forests have been developed for studying the development of trees in space and time. Such models typically depend on various numerical parameters that represent the ecological processes of growth (G), inter-plant competition (C) and birth-and-death (B&D; also called regeneration and mortality). Until now little work has been done to systematically trace the influence of these processes and their model parameters on the spatial structure of forest ecosystems. This paper attempts to fill this gap by addressing an important aspect of forest structure, spatial variability, characterised by the mark variogram as a summary characteristic. The model used was inspired by components of various well-established IBMs including a shot-noise competition field. Time series data from monospecies forests in three different countries of the northern hemisphere provided ecological reference scenarios. Though a case study, the paper's methodology is rather general and can be applied to any model and forest ecosystem. Methods of sensitivity analysis revealed that only a small number of model parameters is crucial for forming spatial variability. Particularly important is the range of competition between trees; with increasing range the variability increases. Growth processes have considerable importance particularly with short observation periods and in young forests, whereas mortality processes become more influential in the long-term. Naturally, these statements depend upon the initial structure and on the length of the observation period.
机译:已经开发了许多不同的森林时空个体模型(IBM),用于研究树木在时空上的发展。此类模型通常取决于代表生长(G),植物间竞争(C)和生死(B&D;也称为再生和死亡率)的生态过程的各种数值参数。到目前为止,几乎没有做过任何工作来系统地追踪这些过程及其模型参数对森林生态系统空间结构的影响。本文试图通过解决森林结构的一个重要方面,即空间变异性(以标记变异图为摘要特征)来填补这一空白。所使用的模型的灵感来自各种成熟的IBM公司的组件,包括散粒噪声竞争领域。来自北半球三个不同国家的单一物种森林的时间序列数据提供了生态参考情景。尽管是案例研究,但本文的方法相当笼统,可应用于任何模型和森林生态系统。敏感性分析的方法表明,只有少量模型参数对形成空间变异性至关重要。树木之间的竞争范围尤其重要;随着范围的增加,可变性增加。生长过程具有相当重要的意义,特别是在较短的观察期和在年轻的森林中,而长期而言,死亡过程的影响力更大。当然,这些陈述取决于初始结构和观察期的长度。

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