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Growth of a root system described as diffusion. II. Numerical model and application

机译:根系的生长称为扩散。二。数值模型及其应用

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In simulation models for water movement and nutrient transport, uptake of water and nutrients by roots forms an essential part. As roots are spatially distributed, prediction of root growth and root distribution is crucial for modelling water and nutrient uptake. In a preceding paper, De Willigen et al. (2002; Plant and Soil 240, 225–234) presented an analytical solution for describing root length density distribution as a diffusion-type process. In the current paper, we present a numerical model that does the same, but which is more flexible with respect to where root input can occur. We show that the diffusion-type root growth model can describe well observed rooting patterns. We used rooting patterns for different types of crops: maize, gladiolus, eastern white cedar, and tomato. For maize, we used data for two different types of fertiliser application: broadcast and row application. In case of row application, roots extend more vertically than horizontally with respect to the broadcast application situation. This is reflected in a larger ratio of diffusion coefficients in vertical versus horizontal direction. For tomato, we considered tomatoes grown on an artificial rooting medium, i.e. rockwool. We have shown that, in principle, the model can be extended by including reduction functions on the diffusion coefficient in order to account for environmental conditions.
机译:在水分运动和养分传输的模拟模型中,根对水分和养分的吸收是必不可少的部分。由于根系在空间上分布,因此预测根系生长和根系分布对于模拟水分和养分吸收至关重要。在先前的论文中,De Willigen等人。 (2002;植物与土壤240,225–234)提出了一种分析解决方案,用于描述根长度密度分布为扩散型过程。在当前的论文中,我们提出了一个数值模型,该模型可以执行相同的操作,但是相对于可以发生根输入的位置,它更灵活。我们表明,扩散型根系生长模型可以描述观察到的生根模式。我们对不同类型的农作物使用了生根模式:玉米,唐蒲,东部白雪松和番茄。对于玉米,我们将数据用于两种不同类型的肥料施用:广播施用和行施用。在行应用的情况下,相对于广播应用情况,根在垂直方向上比在水平方向上延伸更多。这反映为垂​​直方向与水平方向上扩散系数的比例更大。对于番茄,我们考虑了在人工生根培养基即岩棉上生长的番茄。我们已经证明,原则上,可以通过在扩散系数上包括归约函数来扩展模型,以便解决环境条件。

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