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Towards a Continuous Approach of Functional-Structural Plant Growth

机译:朝着功能性结构植物生长的连续方法

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We propose in this article a continuous approach to model functional-structural plant growth based on the discrete GreenLab model. The continuous dynamics is driven by a system of differential equations with respect to calendar time, with a continuous mechanism of senescence introducing delay terms. A numerical scheme for solving the system is studied, and applied to sugar beet to compare different approximation methods including the classical discrete model. With a higher precision, the simulation based on the continuous approach reveal significant differences with the discrete model. Moreover, an approximation of the continuous model is derived with a daily time step, which makes it suitable for agronomy applications.
机译:我们提出本文基于离散的Greenlab模型的基础模型功能 - 结构植物生长的连续方法。连续动态由相对于日历时间的微分方程系统驱动,具有延迟趋势的连续机制。研究了用于解决系统的数值方案,并应用于甜菜,以比较包括经典离散模型的不同近似方法。具有更高的精度,基于连续方法的仿真揭示了与离散模型的显着差异。此外,连续模型的近似是通过每日时间步骤导出的,这使得适用于农艺应用。

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