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Should be Taken into Account the Plant Azimuth to Estimate the Light Phylloclimate within a Virtual Maize Canopy?

机译:应该考虑植物方位角来估算虚拟玉米冠层中的轻邻苯三甲酸酯吗?

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Function-Structure Plant models (FSPM) usually describe accurately the plant geometry, but less accurately the inter-plant geometry. Indeed, simulating an actual inter-plant geometry would require simulating how neighbor plants “interact” to colonize free space with their respective organs. Thus, the question of how accurate the inter-plant geometry needs to be taken into account arises. This question comes partly from the required accuracy for the simulation of physical transfer within virtual canopies. The present study focuses on the relative azimuths of maize plants and their effects effect on light interception at various scales. Results showed low effects at canopy and leaf rank scale, higher effects at individual plant scale, and significantly at individual leaf scale. They raise two questions: how reliable are FSPMs using leaf irradiance but not taking into account inter-plant geometry and how validate the canopy architecture component of FSPMs has to be validated regarding leaf irradiance estimation, knowing that canopy-scale light variables such as ground cover, are not well suited?
机译:功能结构工厂模型(FSPM)通常准确地描述工厂的几何形状,但是不太准确地描述工厂间的几何形状。确实,模拟实际的植物间几何形状将需要模拟相邻植物如何“交互”以用各自的器官定居自由空间。因此,出现了需要考虑植物间几何形状的精确度的问题。这个问题部分来自模拟虚拟机盖内物理传输所需的准确性。本研究着重于玉米植物的相对方位角及其在不同尺度下对光截获的影响。结果表明,在冠层和叶片等级尺度上的影响较小,在单个植物尺度上的影响较高,而在单个叶片尺度上的影响则显着。他们提出了两个问题:使用叶片辐照度的FSPM的可靠性如何,但不考虑植物间的几何形状;考虑叶片辐照度的估算(如地面覆盖),必须如何验证FSPM的冠层结构组件的有效性? ,不太适合吗?

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