Моделирование динамики лесных экосистем с учётом их структурной неоднородности на разных функциональных и пространственных уровнях

V.N. Shanin, P. Frolov, I.V. Priputina, O. Chertov, S.S. Bykhovets, E. V. Zubkova, A.M. Portnov, G.G. Frolova, M.N. Stamenov, P.Y. Grabarnik
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引用次数: 1

Abstract

In many problems of modern forest ecology, it is necessary to analyze the conjugated dynamics of processes occurring at different spatio-temporal scales of the functioning of plant communities and soils resulted from their interaction under the influence of all edaphic and anthropogenic factors. Mathematical models can be an efficient tool for such analysis. The aim of this study is to present the implementation of a new system of models that makes it possible to reproduce in simulation experiments the spatial structure of forest phytocenoses formed by tree and grass-shrub layers, as well as associated heterogeneity of soil conditions and the diversity of ecological niches at different hierarchical levels. To determine the required level of detail of the spatial heterogeneity of forest biogeocenoses related to the processes of their multi-scale functioning, experimental studies were carried out on permanent sampling plots in the Prioksko-Terrasny State Natural Biosphere Reserve and in the “Kaluzhskie Zaseki” State Nature Reserve. The spatial structure of communities and related heterogeneity of ecological conditions were studied using traditional soil and geobotanical, as well as modern instrumental methods. The obtained data were used to construct the algorithms and to estimate the parameters of different blocks of the new system of models. The implementation of a spatially-explicit process-based system of models has shown its ability to reproduce the dynamics of forest ecosystems, taking into account the species composition and spatial structure of different layers of vegetation and the associated patchiness of soil conditions. Because of a wide range of interrelated ecosystem characteristics implemented in the system of models it is possible to simulate productivity, biological turnover of C and N, and the dynamics of forest ecosystems, taking into account their characteristic spatial structure at different scales. This makes it possible to improve the understanding of ecosystem processes and their contribution to maintaining the sustainable functioning of forests, which can be used for predictive assessments of the efficiency of forest management techniques and in solving other forestry and environmental problems.
在现代森林生态学的许多问题中,有必要分析植物群落与土壤相互作用在不同时空尺度下的耦合动态过程。数学模型是进行这种分析的有效工具。本研究的目的是提出一种新的模型系统,使模拟实验能够再现由乔木层和草-灌木层构成的森林植物群落的空间结构,以及不同层次上土壤条件的异质性和生态位的多样性。为了确定森林生物地球群落的空间异质性及其多尺度功能过程所需的详细程度,在Prioksko-Terrasny国家自然生物圈保护区和Kaluzhskie Zaseki国家自然保护区进行了实验研究。利用传统的土壤和地植物学方法以及现代仪器方法研究了群落的空间结构和相关的生态条件异质性。获得的数据用于构造算法和估计新模型系统中不同块的参数。在考虑到不同植被层的物种组成和空间结构以及相关的土壤条件斑块性的情况下,基于空间显性过程的模型系统的实施显示出再现森林生态系统动态的能力。由于在模型系统中实现了广泛的相互关联的生态系统特征,因此有可能模拟生产力、碳和氮的生物周转以及森林生态系统的动态,同时考虑到它们在不同尺度上的特征空间结构。这就有可能增进对生态系统过程及其对维持森林可持续功能的贡献的了解,从而可用于对森林管理技术的效率进行预测性评价,并用于解决其他林业和环境问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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