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Endogenous Fractal Dynamics at Alpine Treeline Ecotones

机译:高山林线交错带的内源分形动力学

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Many of the hypotheses proposed to explain ecotones are based on an individualistic paradigm and are essentially static. While they include local feedbacks, they ignore the interactions between pattern and process across scales. These feedbacks in ecotones are nonlinear in nature and complicate the relations of pattern and process in vegetation, which, combined with observed fractal patterns, suggests a complexity science approach to investigate ecotone dynamics. A cellular automaton of alpine treeline, including nonlinear, local, positive, and negative feedbacks in tree establishment and mortality, as reported in field studies, is used as a model system. Fourier analysis of simulated alpine treelines shows fractal patterns across the treeline landscapes, which are created by patch development. The temporal evolution of the spatial pattern is also fractal. Landscape scale linear correlations between spatial pattern and the rate of advance of trees into tundra arise from localized nonlinear interactions. A tree-patch-landscape scale explanation of pattern-process interaction is proposed in which the endogenous feedbacks determine the spatial and temporal fractal properties of the ecotone. The simulated treeline advance exhibits self-organized complexity and may indicate a potential strategy for monitoring change.
机译:提出的解释生态交错的许多假设都是基于个人主义范式的,并且基本上是静态的。尽管它们包括本地反馈,但它们忽略了跨规模的模式与过程之间的交互。生态交错带中的这些反馈本质上是非线性的,使植被的格局与过程之间的关系变得复杂,再加上观察到的分形图案,提出了研究复杂生态交错体动力学的复杂科学方法。如实地研究中所报道的那样,高山树线的细胞自动机,包括树的建立和死亡率方面的非线性,局部,正和负反馈,被用作模型系统。对模拟的高山林线的傅立叶分析显示了整个林线景观的分形图案,这些图案是由斑块发育产生的。空间模式的时间演变也是分形的。空间格局与树木进入苔原的速度之间的景观尺度线性相关性是由局部非线性相互作用引起的。提出了一种模式-过程相互作用的树丛-景观尺度解释,其中内生反馈决定了过渡带的时空分形特性。模拟的树线进度显示出自组织的复杂性,并可能指示监视更改的潜在策略。

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