首页> 外文会议>IEEE International Conference on Functional-Structural Plant Growth Modeling, Simulation, Visualization and Applications >Impact of geometrical traits on light interception in conifers: Analysis using an FSPM for Scots pine
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Impact of geometrical traits on light interception in conifers: Analysis using an FSPM for Scots pine

机译:几何性状对针叶树光截取的影响:使用FSPM进行苏格兰松树的分析

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The main principle in functional-structural plant models (FSPMs) is the interaction between plant structure and eco-physiology. One aspect where the structure is of special importance is the complex calculation of light distribution in a plant which is in many models the basis for photosynthesis calculation. In this work we try to quantify the importance of geometrical traits for light absorption in conifers, using the LIGNUM model for Scots pine, and a method of global sensitivity analysis for selected geometrical parameters at needle (angle, length) and shoot (branching and bending angles, radius to length ratio) scale. While all the simulations were executed on GroIMP, sensitivity analysis was performed in PYGMALION. A new interface was created to enable the communication between GroIMP and PYGMALION software using a black-box approach, with the overall workflow controlled by PYGMALION. First results of sensitivity analysis showed that needle length had the highest impact on light interception during the whole studied period of 10 years, followed by needle angle during the first 7 years. The sensitivity to both parameters had a decreasing tendency. Impact of radius to length ratio was very similar to branching angle of the higher order branches; very low during the first years of the simulation, with increasing tendency. After the first 7 years, it was higher than the one of needle angle. There was no impact of branching angle for branches connected to the trunk and of bending angle during the studied time period.
机译:功能性结构植物模型(FSPMS)的主要原理是植物结构与生态生理学之间的相互作用。该结构具有特殊重要性的一个方面是在许多模型中的光合作用计算基础的植物中的光分布复杂计算。在这项工作中,我们试图使用苏格兰松树的Lignum模型来量化针叶树在针叶树中对光吸收的重要性,以及针对针头(角度,长度)和拍摄的选定几何参数的全局敏感性分析方法(分支和弯曲角度,半径到长度比)刻度。虽然所有模拟都在磁沟上执行,但在PygMalion中进行了敏感性分析。创建了一个新接口,以便使用BloIMB和PyGmalion软件之间的通信使用Black-Box方法,具有由PyGmalion控制的整体工作流程。敏感性分析的首次结果表明,针长度对整个研究期间的光拦截的影响最高,在10年的整个学习期间,随后是前7年的针角度。对两个参数的敏感性降低了趋势。半径对长度的影响非常类似于高阶分支的分支角度;在模拟的第一年来非常低,随着趋势的增加。在前7年之后,它高于针角度。在研究期间,分支角度对于连接到躯干的分支角度没有影响,并且在研究期间弯曲角度。

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