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Evaluation of a radiosity based light model for greenhouse cucumber canopies

机译:基于光能传递的温室黄瓜冠层光模型的评估

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Light distribution is a key factor of developmental and growth processes, and strongly depends on the foliage distribution which is affected, e.g., by the arrangement of the plants in the canopy. The precise simulation of the light distribution on organ level is an essential component for dynamical plant models which incorporate structural and physiological adaptions of plants to their environment. Combinations of static 3D plant models with 3D light models are used for analyzing the complex light distribution on leaf level in silico, but detailed measurements for evaluation of simulation results are almost non-existent. This study addressed the evaluation of a model on a high level of detail using individual leaf based light measurements in canopies of cucumber (Cucumis sativus L). We combined a static 3D plant model derived from digitized plants on an individual organ scale with a mock-up of the surrounding canopy and a 3D radiosity based light distribution model. Variations of plant density and spacing were analyzed to cover a range of canopy architectures. An exclusion of components of the light environment by applying a shading encasement followed by a successive uncovering allowed investigating the scene under increasing levels of complexity. The combined 3D plant-light distribution approach allowed determining the interaction of the light directions and the canopy architecture as well as differences in the accuracy of the simulations. Depending on canopy architecture and shading treatment, the light distributions covered a range from exponentially shaped vertical gradients in encased treatments to nearly flat light profiles in nonencased conditions. In conclusion, simulations of leaf level PAR based on combinations of detailed 3D surfaced-based plant and light distribution models are suitable to derive light-induced physiological responses on organ level
机译:光分布是发育和生长过程的关键因素,并且强烈取决于例如受树冠中植物的排列影响的叶子分布。在器官水平上精确模拟光分布是动态植物模型的重要组成部分,该模型结合了植物对环境的结构和生理适应性。静态3D植物模型与3D光照模型的组合用于分析计算机上叶片水平的复杂光分布,但是几乎不存在用于评估模拟结果的详细测量方法。这项研究使用黄瓜(Cucumis sativus L)冠层中基于单个叶片的光线测量结果,对模型的高细节评估进行了评估。我们将静态数字化植物衍生的静态3D植物模型与单个器官规模与周围树冠的模型和基于3D辐射度的配光模型相结合。分析了植物密度和间距的变化,以涵盖各种冠层结构。通过应用遮光罩,然后连续进行曝光,排除了光照环境的组成部分,从而可以在复杂性不断提高的情况下调查场景。组合的3D植物-光分布方法允许确定光的方向与树冠结构的相互作用以及模拟精度的差异。根据遮篷的结构和遮蔽处理,光线分布范围涵盖了从封闭处理中的指数形状垂直梯度到非封闭条件下的近乎平坦的光线分布。总之,基于详细的基于3D表面的植物和光分布模型的组合的叶水平PAR的模拟适用于在器官水平上导出光诱导的生理反应

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