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Relationship between fraction of radiation absorbed by photosynthesizing maize and soybean canopies and NDVI from remotely sensed data taken at close range and from MODIS 250 m resolution data

机译:辐射吸收的辐射分数之间的关系 从近距离采集的遥感数据和mODIs 250 m分辨率数据合成玉米和大豆冠层和NDVI的光合作用

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摘要

The fraction of incident photosynthetically active radiation absorbed by the photosynthesizing tissue in a canopy (fAPAR) is a key variable in the assessment of vegetation productivity. It also plays tremendous role in accurate retrieval of light use efficiency, which is essential for assessing vegetation health status. The main goal of this work was to study in detail relationships of fAPAR absorbed by photosynthetically active vegetation (fAPARgreen) and Normalized Difference Vegetation Index (NDVI) for two crops with contrasting leaf structures (C3 vs. C4) and canopy architectures, using close range (6 m above the canopy) radiometric data and daily MODIS data taken during eight growing seasons over three irrigated and rainfed maize and soybean sites. Our specific goal was to understand differences in fAPARgreen/NDVI relationshipwhen crop canopy was almost vertically homogeneous (with respect to leaf area and leaf chlorophyll content), as in vegetative stage, and vertically heterogeneous as in reproduction stage. Firstly, we established fAPARgreen/NDVI relationships for NDVI, taken at close range, and assessed noise equivalent of fAPARgreen estimation by NDVI, and then we established relationships for NDVI retrieved from daily MODIS 250 m data. Daily MODIS data illuminated fine details of this relationship and detected effects of canopy heterogeneity on fAPARgreen/NDVI relationship. In vegetative stage, the fAPAR/NDVI relationships for contrasting in leaf structures and canopy architectures crops were almost linear allowing accurate estimation of fAPARgreen as it is below 0.7. However, very different fAPARgreen/NDVI relationships in reproductive stages for both crops were observed, showing that canopy architecture and leaf structure greatly affect the relationship as leaf chlorophyll content changes and vertical distribution of chlorophyll content and green LAI inside the canopy becomes heterogeneous.We have found fine details of the fAPARgreen/NDVI relationships with two types of hysteresis that prevent the use of a single relationship for fAPARgreen estimation by NDVI over the whole growing season and suggested mechanisms for each type of hysteresis that should be further studied using radiative transfer models.
机译:冠层中的光合作用组织吸收的入射光合作用活性辐射的比例(fAPAR)是评估植被生产力的关键变量。它在准确获取光利用效率方面也发挥着巨大作用,这对于评估植被健康状况至关重要。这项工作的主要目的是利用近距离研究两种叶片结构对比(C3 vs. C4)和冠层结构的农作物的光合活性植被吸收的fAPAR(fAPARgreen)和归一化植被指数(NDVI)的详细关系。 (在冠层上方6 m)在三个灌溉和雨育玉米和大豆种植地点的八个生长季节中采集的辐射数据和每日MODIS数据。我们的具体目标是了解在营养阶段,作物冠层在垂直方向上均一(相对于叶面积和叶片叶绿素含量)在垂直方向上是同质的,而在繁殖期则是垂直不均一的,从而了解fAPARgreen / NDVI关系的差异。首先,我们建立了近距离拍摄的NDVI的fAPARgreen / NDVI关系,并通过NDVI评估了fAPARgreen估计的噪声当量,然后建立了从每日MODIS 250 m数据中获取的NDVI的关系。每日MODIS数据阐明了这种关系的细节,并检测到冠层异质性对fAPARgreen / NDVI关系的影响。在植物生长阶段,在叶片结构和冠层结构农作物中形成对比的fAPAR / NDVI关系几乎是线性的,因此当fAPARgreen低于0.7时,可以准确估算。然而,在两种作物的生殖阶段都观察到了非常不同的fAPARgreen / NDVI关系,这表明随着叶片叶绿素含量的变化以及冠层内部叶绿素含量和绿色LAI的垂直分布变得异质,冠层结构和叶片结构极大地影响了这种关系。发现了fAPARgreen / NDVI与两种类型的磁滞之间的精细关系,这些细节阻止了在整个生长季节中通过NDVI对fAPARgreen进行单一的估算,并提出了每种类型磁滞的机制,应使用辐射转移模型进一步研究。

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