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Stochastic Dynamics of Plant-Water Interactions

机译:植物与水相互作用的随机动力学

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摘要

Describing water flow from soil through plants to the atmosphere remains a formidable scientific challenge despite years of research. This challenge is not surprising given the high dimensionality and degree of nonlinearity of the soil-plant system, which evolves in space and time according to complex internal physical, chemical, and biological laws forced by external hydroclimatic variability. Although rigorous microscopic laws for this system still await development, some progress can be made on the formulation of macroscopic laws that upscale known submacroscopic processes and use surrogate stochasticity to preserve the probabilistic and spectral information content of the high dimensional system. The external hydroclimatic forcing is inherently intermittent with variability across all scales, thereby precluding the use of standard approximations employed in analysis of stochastic processes (e.g., small noise perturbations). Examples are provided to show how superposition of stochasticity at multiple space-time scales shapes plant-water interactions.
机译:尽管经过了多年的研究,描述水从土壤流经植物到大气的流向仍然是一项艰巨的科学挑战。考虑到土壤-植物系统的高维度和非线性程度,这种挑战不足为奇,该系统根据外部水气候变化导致的复杂内部物理,化学和生物定律,在空间和时间上演化。尽管此系统仍然需要严格的微观定律,但在制定宏观定律方面可以取得一些进展,这些宏观定律可以放大已知的超宏观过程,并使用替代随机性来保留高维系统的概率和光谱信息内容。外部水文气候强迫在所有尺度上都是固有的间歇性变化,从而排除了在随机过程分析中使用的标准近似值(例如,小噪声扰动)的使用。提供了一些示例以显示在多个时空尺度上随机性的叠加如何影响植物与水之间的相互作用。

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