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Does the Normalized Difference Vegetation Index explain spatial and temporal variability in sap velocity in temperate forest ecosystems?

机译:归一化差异植被指数是否解释了温带森林生态系统中SAP速度的空间和时间变异?

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Understanding the link between vegetation characteristics and tree transpiration is a critical need to facilitate satellite-based transpiration estimation. Many studies use the Normalized Difference Vegetation Index (NDVI), a proxy for tree biophysical characteristics, to estimate evapotranspiration. In this study, we investigated the link between sap velocity and 30 m resolution Landsat-derived NDVI for 20 days during 2 contrasting precipitation years in a temperate deciduous forest catchment. Sap velocity was measured in the Attert catchment in Luxembourg in 25 plots of 20 x 20 m covering three geologies with sensors installed in two to four trees per plot. The results show that, spatially, sap velocity and NDVI were significantly positively correlated in April, i.e. NDVI successfully captured the pattern of sap velocity during the phase of green-up. After green-up, a significant negative correlation was found during half of the studied days. During a dry period, sap velocity was un-correlated with NDVI but influenced by geology and aspect. In summary, in our study area, the correlation between sap velocity and NDVI was not constant, but varied with phenology and water availability. The same behaviour was found for the Enhanced Vegetation Index (EVI). This suggests that methods using NDVI or EVI to predict small-scale variability in (evapo)transpiration should be carefully applied, and that NDVI and EVI cannot be used to scale sap velocity to stand-level transpiration in temperate forest ecosystems.
机译:了解植被特征和树蒸腾之间的联系是促进基于卫星的蒸腾估计的关键需求。许多研究使用归一化差异植被指数(NDVI),对树生物物理特征进行代理,以估算蒸散蒸腾。在这项研究中,我们在温带落叶林流域的2个对比沉淀年度期间调查了SAP速度和30米分辨率的LANDSAT衍生的NDVI之间的联系。 SAP速度在卢森堡的Attert集水区中测量了25个20 x 20米的覆盖三个地质,每个绘图有两到四棵树的传感器。结果表明,4月份,即4月,即4月,即4月,SAP速度和NDVI显着呈正相关。NDVI在绿色阶段成功捕获了SAP速度的模式。绿色后,在研究日的一半期间发现了显着的负相关。在干燥期间,SAP速度与NDVI无关,但受地质和方面的影响。总之,在我们的研究领域,SAP速度与NDVI之间的相关性并不恒定,而是随候选和水可用性而变化。发现增强植被指数(EVI)发现了相同的行为。这表明应仔细地应用使用NDVI或EVI预测(EVAPO)蒸腾蒸腾的小规模变异性的方法,并且NDVI和EVI不能用于将SAP速度缩放到温带森林生态系统中的支架升级蒸腾。

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