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Correcting non-linearity and slope effects in the estimation of the leaf area index of forests from hemispherical photographs.

机译:从半球照片中校正森林叶面积指数的估计中的非线性和斜率效应的校正。

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摘要

The leaf area index (LAI) of forest canopies can be estimated indirectly by measuring their light transmission, either with a specific sensor or by hemispherical photographs. The angle at which the transmission is measured enters the calculations at two different points: (1) as angle of incidence determining the travel distance of a light ray through the whole canopy and (2) relatively to the zenith for the statistical distribution of the angle at which the single foliage elements are seen. On a flat ground, any direction is sufficiently described by its zenith angle. On a slope, however, the angle of incidence is not identical to the zenith angle. Each direction in the canopy has thus to be classified according to both angles. We propose here an iterative method to introduce this slope effect into the calculation of LAI (and mean leaf angle) from hemispherical pictures. This method was tested both on artificial pictures simulating ideal canopies and on photographs taken in forests of different LAI, growing on slopes up to 37 degrees . This method was found to give accurate results, while neglecting the effect of the slope would lead to underestimations of LAI, especially in dense canopies. On a flat ground, the proposed method also improves the accuracy of the calculations because it better accounts for the non-linear relationship between light transmission and LAI..
机译:森林冠层的叶面积指数(LAI)可以通过使用特定传感器或通过半球照片测量其透光率来间接估算。测量透射率的角度在两个不同的点进入计算:(1)作为入射角,确定光线穿过整个顶篷的传播距离;(2)相对于天顶的角度统计分布在该处可以看到单个树叶元素。在平坦的地面上,任何方向都可以通过其天顶角充分描述。但是,在斜坡上,入射角与天顶角不同。因此,必须根据两个角度对顶篷中的每个方向进行分类。我们在这里提出一种迭代方法,将该斜率效应引入半球图片的LAI(和平均叶角)计算中。在模拟理想树冠的人造图片和在高达37度的斜坡上生长的不同LAI的森林中拍摄的照片上均测试了该方法。人们发现这种方法给出了准确的结果,而忽略了坡度的影响将导致对LAI的低估,特别是在茂密的树冠中。在平坦的地面上,该方法还可以更好地解决光透射与LAI之间的非线性关系,因此也提高了计算的准确性。

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