首页> 外文期刊>Journal of Applied Spectroscopy >Spectral Reflectance and Vegetation Index Changes in Deciduous Forest Foliage Following Tree Removal: Potential for Deforestation Monitoring
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Spectral Reflectance and Vegetation Index Changes in Deciduous Forest Foliage Following Tree Removal: Potential for Deforestation Monitoring

机译:树木采伐后落叶林叶片的光谱反射率和植被指数变化:毁林监测的潜力

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摘要

It is important to detect and quantify deforestation to guide strategic decisions regarding environment, socioeconomic development, and climate change. In the present study, we conducted a field experiment to examine spectral reflectance and vegetation index changes in poplar and locust tree foliage with different leaf area indices over the course of three sunny days, following tree removal from the canopy. The spectral reflectance of foliage from harvested trees was measured using an ASD FieldSpec Prospectroradiometer; synchronous meteorological data were also obtained. We found that reflectance in short-wave infrared and red-edge reflectance was more time sensitive after tree removal than reflectance in other spectral regions, and that the normalized difference water index (NDWI) and the red-edge chlorophyll index (CIRE) were the preferred indicators of these changes from several indices evaluated. Synthesized meteorological environments were found to influence water and chlorophyll contents after tree removal, and this subsequently changed the spectral canopy reflectance. Our results indicate the potential for such tree removal to be detected with NDWI or CIRE from the second day of a deforestation event.
机译:重要的是检测和量化森林砍伐,以指导有关环境,社会经济发展和气候变化的战略决策。在本研究中,我们进行了野外试验,以检查从树冠上去除树木后的三个晴天期间具有不同叶面积指数的杨树和刺槐树树叶的光谱反射率和植被指数变化。使用ASD FieldSpec Prospectroradiometer测量采伐树木的叶子的光谱反射率;还获得了同步气象数据。我们发现,树木去除后,短波红外和红边反射的反射比其他光谱区域的反射对时间更敏感,归一化差水指数(NDWI)和红边叶绿素指数(CIRE)是这些变化的首选指标来自多个评估指标。人们发现,综合的气象环境会影响树木去除后的水分和叶绿素含量,从而改变了冠层的光谱反射率。我们的结果表明,从砍伐森林事件的第二天起,就可以使用NDWI或CIRE检测到此类树木的清除。

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