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首页> 外文期刊>Ecological Modelling >CAMPUS-S - The model of ground layer vegetation populations in forest ecosystems and their contribution to the dynamics of carbon and nitrogen. II. Parameterization, validation and simulation experiments
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CAMPUS-S - The model of ground layer vegetation populations in forest ecosystems and their contribution to the dynamics of carbon and nitrogen. II. Parameterization, validation and simulation experiments

机译:校园-S - 森林生态系统地面植被群模型及其对碳和氮动力学的贡献。 II。 参数化,验证和仿真实验

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摘要

This study presents an example of the parameterization and validation of the CAMPUS-S model for the dwarf shrubs of the genus Vaccinium, and the results of computational experiments showing the applicability of the model. A quantitative analysis of the population dynamics of dwarf shrubs, their productivity and contribution to the carbon and nitrogen cycling in forest ecosystems was carried out. The CAMPUS-S model takes the morphology, ontogenesis (developmental stages) and physiological features of modeled species into account, both in undisturbed environmental conditions and under external natural and anthropogenic impacts, including climate change. The validation of the model was based on the independent field data and showed a high reliability of the results. Our simulation experiments showed that species-specific properties of dwarf shrubs, such as their structural and functional organization, flexibility of ontogenesis, and tolerance to a range of environmental factors, determine the resistance of populations to different kinds of disturbances, the speed of occupation of the territory and the ability to hold it. We demonstrated that dwarf shrubs have an important contribution to the carbon and nitrogen cycles of boreal forest ecosystems via above- and belowground litter production.
机译:本研究提出了用于疫苗的矮化灌木的校园-S模型的参数化和验证的示例,以及显示模型适用性的计算实验结果。进行了矮化灌木群体动态的定量分析,对森林生态系统中碳和氮循环的生产率和对碳和氮循环的贡献进行了分析。校园模型考虑了模拟物种的形态,血肿(发育阶段)和生理特征,无论是不受干扰的环境条件和外部自然和人为的影响,包括气候变化。该模型的验证基于独立的现场数据,并显示了结果的高可靠性。我们的模拟实验表明,矮灌木的物种特异性特异性,如它们的结构和功能组织,血露生殖器的灵活性,以及​​对一系列环境因素的耐受性,确定群体对不同种类的干扰,占用速度领土和持有它的能力。我们证明,Dwarf灌木通过上面和低于地下垃圾生产对北方森林生态系统的碳和氮循环具有重要贡献。

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