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SEASONAL CHANGE IN UNDERSTORY REFLECTANCE OF BOREAL FORESTS AND INFLUENCE ON CANOPY VEGETATION INDICES

机译:针叶林对地貌的季节变化及其对冠层植被指数的影响

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One objective of the Boreal Ecosystem-Atmospheric Study (BOREAS) is to increase our understanding of the nature of canopy spectral bidirectional reflectance in the visibleear-infrared regimes for open canopies typical of boreal forest stands. For such stands, the need to characterize the reflectance of the sunlit and shaded vegetated understory is critical. These variables are subject to temporal variability due to differences in species phenology and foliar display as well as diurnal and seasonal changes in solar illumination through a seasonally varying upper canopy foliar area. To provide for this need, a multiteam field effort was mounted to measure the nadir midday understory reflectance for the flux tower sites during 1994 BOREAS field campaigns between February and October, specifically during the winter focused field campaign (FFC-W), the spring thaw focused held campaign (FFC-T), and the three intensive field campaigns (IFC-1, IFC-2, and IFC-3) between June and September, which sample vegetation phenological change. This was accomplished by measuring at near-solar noon the sunlit and shaded nadir reflectance of the understory along a surveyed leaf area index (LAI) transect line at each flux tower site. Site-to-site comparisons of understory reflectance spectra reveal stand differences that become more significant as the season progresses. Mean midday understory reflectance spectra were observed to be remarkably consistent over the season for young jack pine stands, followed by somewhat increased variability for mature jack pine, and significant seasonal variability for black spruce stands. Derived vegetation indices for understories are generally consistent with extrapolations of previous relationships of canopy spectral vegetation indices (Vis) versus leaf area index to zero LAI. Inclusion of these ''zero-LAI'' understory-derived indices significantly enhance the correlation in the linear VI-LAI relationships. [References: 29]
机译:北方生态系统-大气研究(BOREAS)的目标之一是增进我们对北方森林林地典型开放式林冠在可见/近红外区域中林冠光谱双向反射的本质的了解。对于这样的架子,至关重要的是表征阳光照射和阴影遮盖的植被下层的反射率。这些变量由于物种物候和叶面显示的差异以及随季节变化的上层冠层叶面的日照的昼夜变化而随时间变化。为了满足这一需求,在1994年BOREAS野战期间(特别是在春季解冻的冬季野战)(FFC-W)期间,进行了多团队野外工作,以测量1994年BOREAS野战期间通量塔场的最低点午间地下反射率。重点举行的运动(FFC-T),以及6月至9月的三个密集野外运动(IFC-1,IFC-2和IFC-3),这些运动采样了植被物候变化。这是通过在接近太阳正午时测量沿每个通量塔站点的调查叶面积指数(LAI)横断面的下层的阳光照射和阴影最低点反射率来实现的。地下反射光谱的现场对比显示,林分差异随着季节的发展而变得越来越重要。对于年轻的杰克松林,平均午间林下反射光谱观察到在整个季节中非常一致,其后,成熟的杰克松林的变异性有所增加,而黑色云杉林分则具有明显的季节性变异性。地下植被的植被指数通常与冠层光谱植被指数(Vis)对叶面积指数的先前关系外推至零LAI一致。包含这些“零LAI”,底层故事衍生的索引会显着增强线性VI-LAI关系中的相关性。 [参考:29]

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