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Using plant architectural models for estimation of radiation transfer in a coconut-based agroforestry system

机译:使用植物建筑模型估算基于椰子的农林业系统中的辐射传输

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Software modules have been developed to predict the radiative environment of plant stands consisting of computer 'mock-ups' of plants. The architecture of plants used for the computation of radiative characteristics was described at the level of individual organs and simulated according to botanical rules. Three-dimensional stochastic numeric mock-ups were computed for coconut (Cocos nucifera L.) and for cacao (Theobroma cacao L.) according to the 'AMAP' methodology. Then the numerical radiative models were applied to these 'virtual plants' to describe the radiative budgets of individual plant parts and entire plants. Modelled light transmission through virtual coconut canopies was in good agreement with field measurements for different treatments and management practices including palm ages, varieties, and planting densities. In a second stage, combining the computer models of coconuts and cacao in a multistrata system, the fraction of radiation that was transmitted through the coconut canopy and intercepted by cacao was sucessfully simulated.
机译:已经开发了软件模块来预测植物架的辐射环境,其中包括植物的计算机“模型”。用于计算辐射特性的植物结构在各个器官的水平上进行了描述,并根据植物学规则进行了模拟。根据“ AMAP”方法,针对椰子(Cocos nucifera L.)和可可(Theobroma cacao L.)计算了三维随机数值模型。然后,将数值辐射模型应用于这些“虚拟植物”,以描述单个植物部分和整个植物的辐射预算。通过虚拟椰子冠层进行的模拟光传输与针对不同处理和管理实践(包括棕榈龄,品种和种植密度)的田间测量非常吻合。在第二阶段中,将椰子和可可的计算机模型结合到一个多层系统中,成功地模拟了通过椰子冠层传输并被可可拦截的辐射部分。

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