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CONVECTIVE-DIFFUSIVE MODEL OF TWO-DIMENSIONAL ROOT GROWTH AND PROLIFERATION

机译:二维根系生长与繁殖的对流扩散模型

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Simulations of crop productivity and environmental quality depend strongly on the root activity model used. Flexible, generic root system models are needed that can easily be coupled to various process-based soil models and can easily be modified to test various hypotheses about how roots respond to their environment. In this paper, we develop a convective-diffusive model of root growth and proliferation, and use it to test some of these hypotheses with data on the growth of roots on potted chrysanthemum cuttings. The proliferation of roots is viewed as a result of a diffusion-like gradient-driven propagation in all directions and convection-like propagation downwards caused by geotropism. The finite element method was used to solve the boundary problem for the convective-diffusive equation. To test hypotheses, we wrote modules in a way that caused a test parameter to be zero, should the hypothesis be rejected. These modules were added or removed to test each hypothesis in turn and in various combinations. The model explained 92% of the variation in the experimental data of Chen and Lieth (1993) on root growth of potted chrysanthemum cuttings. For this dataset the following hypotheses were accepted: (1) root diffusivity (colonization of new soil) did not depend on root density, (2) there was no geotropic trend in root development, (3) potential root growth increased linearly with root density, (4) there were (at least) two classes of roots with different rates of growth and proliferation, and (5) potential root growth rate decreased with distance fl om the plant stem base.
机译:作物生产力和环境质量的模拟很大程度上取决于所使用的根系活动模型。需要灵活,通用的根系模型,这些模型可以轻松地与各种基于过程的土壤模型耦合,并且可以轻松地修改以测试有关根系如何响应其环境的各种假设。在本文中,我们建立了根对生扩散的对流扩散模型,并将其用于盆栽菊花cutting插上根生长数据的检验中。根系的扩散被认为是由于向地性引起的扩散状梯度驱动的全方位传播和对流状向下传播的结果。对流扩散方程采用有限元法求解边界问题。为了检验假设,如果假设被拒绝,我们以导致检验参数为零的方式编写模块。添加或删除这些模块可依次并以各种组合测试每个假设。该模型解释了Chen和Lieth(1993)关于盆栽菊花插条根系生长的实验数据的92%的变化。对于该数据集,接受以下假设:(1)根系扩散率(新土壤的定殖)不取决于根系密度;(2)根系发育没有地温趋势;(3)潜在根系生长随根系密度线性增加,(4)至少有两类根系具有不同的生长和增殖速率,(5)潜在根系生长速率随距植物茎基的距离而降低。

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