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Simplified Root Architectural Models Using Continuous Deformable Domains

机译:使用连续可变形域的简化根架构模型

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Plant architectural models have become essential tools to understand how plants access and optimize environmental resources during their development. However, using such models at larger scales, e.g. in population models, remains a great computational challenge. A continuous approach has been developed, based on the continuity equation of meristem quantity. It integrates the elementary developmental processes such as expansion, tropisms and branching rate as independent terms of the equation. A semi-Lagrangian method was developed to solve the equation on discretized domains that were allowed to deform as a result of growth. The approach was applied to a simplified case of density dependent growth in a population. The models presented in this study, still under development, indicate that more efficient whole plant architectural models could be developed using this principle. Potential applications include individual based population modelling or the design and engineering of more efficient crops.
机译:植物架构模型已成为理解工厂在发展期间获取和优化环境资源的重要工具。但是,在更大的尺度上使用这些模型,例如,在人口模型中,仍然是一个很大的计算挑战。基于公司数量的连续性方程,已经开发了一种连续的方法。它将基本发育过程纳入膨胀,矫正和分支率,作为等式的独立条款。开发了一种半拉格朗日方法以解决因增长而变形的离散结构域的等式。该方法应用于群体密度依赖性生长的简化案例。本研究中介绍的模型仍在开发中,表明可以使用此原则开发更有效的整个工厂架构模型。潜在的应用包括基于个体的人口建模或更有效作物的设计和工程。

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