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Maresh Canopy Leaf Area and Orientation Calculated for Improved Marsh Structure Mapping

机译:改进的沼泽结构映射计算的马氏冠层叶面积和方向

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摘要

An approach is presented for producing the spatiotemporal estimation of leaf area index (LAI) of a highly heterogeneous coastal marsh without reliance on user estimates of marsh leaf-stem orientation. The canopy LAI profile derivation used three years of field measured photosynthetically active radiation (PAR) vertical profiles at seven S. alterniflora marsh sites and iterative transform of those PAR attenuation profiles to best-fit light extinction coefficients (KM). KM sun zenith dependency was removed obtaining the leaf angle distribution (LAD) representing the average marsh orientation and the LAD used to calculate the LAI canopy profile. LAI and LAD reproduced measured PAR profiles with 99 percent accuracy and corresponded to field documented structures. LAI and LAD better reflect marsh structure and results substantiate the need to account for marsh orientation. The structure indexes are directly amenable to remote sensing spatiotemporal mapping and offer a more meaningful representation of wetland systems promoting biophysical function understanding.
机译:提出了一种不依赖用户对沼泽茎干方向的估计而产生高度异质沿海沼泽的叶面积指数(LAI)的时空估计方法。冠层LAI轮廓推导使用三年实地测量的互花米草沼泽地光合有效辐射(PAR)垂直轮廓,并将这些PAR衰减轮廓迭代转换为最适合的光消光系数(KM)。去除了KM太阳天顶依赖性,获得了代表平均沼泽方向的叶角分布(LAD)和用于计算LAI冠层轮廓的LAD。 LAI和LAD以99%的精度复制了测得的PAR轮廓,并与现场记录的结构相对应。 LAI和LAD更好地反映了沼泽的结构,结果证实了考虑沼泽方向的必要性。结构指标直接适用于遥感时空图,并提供了更有意义的湿地系统表示,可促进对生物物理功能的理解。

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