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首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Vegetation-soil water interaction within a dynamical ecosystem model of grassland in semi-arid areas
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Vegetation-soil water interaction within a dynamical ecosystem model of grassland in semi-arid areas

机译:半干旱地区草地动态生态系统模型中的植被-土壤水相互作用

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摘要

A dynamical ecosystem model with three variables, living biomass, wilted biomass and available soil wetness, is developed to examine the vegetationsoil water interaction in semi-arid areas. The governing equations are based on the mass conservation law. The physical and biophysical processes are formulated with the parameters estimated from observational data. Both numerical results and qualitative analysis of the model as well as observational data indicate that the maintenance of a grassland requires a minimum precipitation (or equivalently, a minimum moisture index), and the grassland and desert ecosystem can coexist when precipitation is within a range above this threshold. Sensitivity studies show that these numerical results are robust with respect to model parameters and the transformation functions. It is also found that the wilted vegetation plays a very important role in shaping the transition between grassland and desert. By using the theories of an attractor basin and multiple equilibrium states, the conditions for grassland maintenance and the strategy of grazing are also analysed.
机译:建立了具有三个变量的动态生态系统模型,即活生物量,枯萎生物量和可用土壤湿度,以研究半干旱地区的植被-土壤水相互作用。控制方程基于质量守恒定律。物理和生物物理过程是根据从观测数据估计的参数制定的。该模型的数值结果和定性分析以及观测数据均表明,草地的维护需要最少的降水量(或等效地,最小湿度指数),并且当降水量在上述范围内时,草地和沙漠生态系统可以共存这个门槛。敏感性研究表明,这些数值结果对于模型参数和转换函数具有鲁棒性。还发现枯萎的植被在塑造草地和沙漠之间的过渡过程中起着非常重要的作用。利用吸引盆地理论和多种均衡状态,分析了草地维护的条件和放牧策略。

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