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An impulsive modelling framework of fire occurrence in a size-structured model of tree-grass interactions for savanna ecosystems

机译:粮草生态系统尺寸结构模型中的一种冲动的火灾建模框架

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Fires and mean annual rainfall are major factors that regulate woody and grassy biomasses in savanna ecosystems. Within the savanna biome, conditions of long-lasting coexistence of trees and grasses have been often studied using continuous-time modelling of tree-grass competition. In these studies, fire is a time-continuous forcing while the relationship between woody plant size and fire-sensitivity is not systematically considered. In this paper, we propose a new mathematical framework to model tree-grass interactions that takes into account both the impulsive nature of fire occurrence and size-dependent fire sensitivity (via two classes of woody plants). We carry out a qualitative analysis that highlights ecological thresholds and bifurcation parameters that shape the dynamics of the savanna-like systems within the main ecological zones. Through a qualitative analysis, we show that the impulsive modelling of fire occurrences leads to more diverse behaviors including cases of grassland, savanna and forest tristability and a more realistic array of solutions than the analogous time-continuous fire models. Numerical simulations are carried out with respect to the three main ecological contexts (moist, mesic, semi-arid) to illustrate the theoretical results and to support a discussion about the bifurcation parameters and the advantages of the model.
机译:火灾和平均年降雨是在大草原生态系统中调节木质和草地生物量的主要因素。在大草原生物群系中,通常使用树草竞争的连续模型研究了树木和草的长期共存的条件。在这些研究中,火灾是一种不连续的强迫,而木质植物尺寸与火敏之间的关系没有系统地考虑。在本文中,我们提出了一种新的数学框架来模拟树木互动,考虑到火灾发生和依赖于依赖性的火敏感性的冲动性质(通过两类木质植物)。我们执行了一个定性分析,突出了生态阈值和分叉参数,这些参数塑造了主要生态区域内的大草原样系统的动态。通过定性分析,我们表明火灾发生的冲动建模导致更多不同的行为,包括草地,大草原和森林三种案例以及比类似的时间连续火模型更现实的解决方案。关于三个主要生态背景(潮湿,浅滩,半干旱)进行数值模拟,以说明理论结果,并支持关于分叉参数的讨论和模型的优点。

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