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Nonlinearly combined impacts of initial perturbation from human activities and parameter perturbation from climate change on the grassland ecosystem

机译:人类活动的初始扰动和气候变化的参数扰动对草地生态系统的非线性组合影响

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Human activities and climate change are important factors that affect grassland ecosystems. A new optimization approach, the approach of conditional nonlinear optimal perturbation (CNOP) related to initial and parameter perturbations, is employed to explore the nonlinearly combined impacts of human activities and climate change on a grassland ecosystem using a theoretical grassland model. In our study, it is assumed that the initial perturbations and parameter perturbations are regarded as human activities and climate change, respectively. Numerical results indicate that the climate changes causing the maximum effect in the grassland ecosystem are different under disparate intensities of human activities. This implies the pattern of climate change is very critical to the maintenance or degradation of grassland ecosystem in light of high intensity of human activities and that the grassland ecosystem should be rationally managed when the moisture index decreases. The grassland ecosystem influenced by the nonlinear combination of human activities and climate change undergoes abrupt change, while the grassland ecosystem affected by other types of human activities and climate change fails to show the abrupt change under a certain range of perturbations with the theoretical model. The further numerical analyses also indicate that the growth of living biomass and the evaporation from soil surface shaded by the wilted biomass may be crucial factors contributing to the abrupt change of the grassland equilibrium state within the theoretical model.
机译:人类活动和气候变化是影响草原生态系统的重要因素。一种新的优化方法,即与初始和参数扰动相关的条件非线性最佳扰动(CNOP)方法,用于使用理论草地模型探索人类活动和气候变化对草地生态系统的非线性组合影响。在我们的研究中,假设初始扰动和参数扰动分别被视为人类活动和气候变化。数值结果表明,在人类活动强度不同的情况下,对草原生态系统产生最大影响的气候变化是不同的。这意味着,鉴于人类活动的强度很高,气候变化的模式对于维持或退化草地生态系统非常关键,当湿度指数降低时,应该合理管理草地生态系统。受人类活动和气候变化的非线性组合影响的草地生态系统发生突变,而受其他人类活动和气候变化影响的草地生态系统在理论模型的一定扰动下没有表现出突变。进一步的数值分析还表明,在理论模型内,生物量的增长和枯萎的生物量遮蔽土壤表面的蒸发可能是导致草地平衡态突然改变的关键因素。

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