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Characterising Forest Spatial Structure Through Inhomogeneous Second Order Characteristics

机译:通过不均匀的二阶特征表征森林空间结构

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摘要

Point process theory plays a fundamental role in the analysis and modelling of spatial forest patterns. For instance, the Ripley's K function and its density with respect to the area, i.e. the pair correlation function, have been extensively used to analyse and characterise stationary forest configurations. However, the stationarity condition is not often met in practice when analysing real data. Thus, the development and application of new statistics to measure the degree of inhomogeneity suggests the use of inhomogeneous statistics to describe forest stands. In this paper, we restrict our attention to the inhomogeneous pair correlation function in the context of replicated spatial data. We then analyse the spatial configuration of pure and mixed conifer stands in a case study in Central Catalonia, North-East of Spain. Our results suggest that whilst P. sylvestris tend to be aggregated for short inter-tree distances, P. nigra and P. halepensis keep a minimum inter-event distance between trees. Regarding the mixed stands, trees of distinct species tend to be segregated from each other. Tentative explanations for these results are related with site properties, competition effects, shade tolerance and silviculture practices applied in this forest region.
机译:点过程理论在空间森林格局的分析和建模中起着基本作用。例如,里普利的K函数及其相对于该区域的密度,即对相关函数,已被广泛地用于分析和表征静止的森林形态。但是,在实际数据分析中,平稳性条件在实践中并不经常满足。因此,开发和应用新的统计数据来衡量不均匀程度表明使用不均匀统计来描述林分。在本文中,我们将注意力集中在复制的空间数据的上下文中的非均匀对相关函数上。然后,我们在西班牙东北部加泰罗尼亚中部地区进行了案例分析,分析了纯针叶林和混合针叶林的空间配置。我们的研究结果表明,虽然樟子松倾向于在较短的树间距离上聚集,但黑峰和哈勒种在树木之间保持最小的事件间距离。关于混合林,不同物种的树木往往相互隔离。这些结果的初步解释与该森林地区的场地特性,竞争效果,耐荫性和造林实践有关。

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