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首页> 外文期刊>Journal of arid environments >Using airborne lidar to predict Leaf Area Index in cottonwood trees and refine riparian water-use estimates
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Using airborne lidar to predict Leaf Area Index in cottonwood trees and refine riparian water-use estimates

机译:使用机载激光雷达预测杨木树的叶面积指数并细化河岸用水量估算

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摘要

Estimation of riparian forest structural attributes, such as the Leaf Area Index (LAI), is an important step in identifying the amount of water use in riparian forest areas. In this study, small-footprint lidar data were used to estimate biophysical properties of young, mature, and old cottonwood trees in the Upper San Pedro River Basin, Arizona, USA. Canopy height and maximum and mean laser heights were derived for the cottonwood trees from lidar data. Linear regression models were used to develop equations relating lidar height metrics with corresponding field-measured LAI for each age class of cottonwoods. Four metrics (tree height, height of median energy, ground return ratio, and canopy return ratio) were derived by synthetically constructing a large-footprint lidar waveform from small-footprint lidar data which were compared to ground-based high-resolution Intelligent Laser Ranging and Imaging System (ILRIS) scanner images. These four metrics were incorporated into a stepwise regression procedure to predict field-derived LAI for different age classes of cottonwoods. This research applied the Penman-Monteith model to estimate transpiration of the cottonwoods using lidarderived canopy metrics. These transpiration estimates compared very well to ground-based sap flux transpiration estimates indicating lidar-derived LAI can be used to improve riparian cottonwood water-use estimates.
机译:估算沿岸森林结构属性(例如叶面积指数(LAI))是确定沿岸森林地区用水量的重要一步。在这项研究中,小足迹激光雷达数据用于估计美国亚利桑那州上圣佩德罗河流域的年轻,成熟和老杨木的生物物理特性。从激光雷达数据中得出杨木树的树冠高度,最大和平均激光高度。线性回归模型用于开发方程式,该方程式针对杨木的每个年龄类别将激光雷达高度度量与相应的现场测量的LAI相关联。通过从小足迹激光雷达数据综合构建大足迹激光雷达波形并与基于地面的高分辨率智能激光测距进行比较,得出了四个指标(树高,中值能量高度,地面返回率和冠层返回率)和成像系统(ILRIS)扫描仪图像。将这四个指标整合到逐步回归程序中,以预测不同年龄等级杨木的田间LAI。这项研究应用Penman-Monteith模型,通过使用经过遮盖力的树冠度量标准来估计杨木的蒸腾作用。这些蒸腾量估算值与基于地面的树汁通量蒸腾量估算值进行了很好的比较,表明来自激光雷达的LAI可用于改善河岸杨木用水量估算。

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