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首页> 外文期刊>Hydrology and Earth System Sciences >Lidar-based approaches for estimating solar insolation in heavily forested streams
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Lidar-based approaches for estimating solar insolation in heavily forested streams

机译:基于LIDAR的植物估算森林溪流太阳缺失的方法

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摘要

Methods to quantify solar insolation in riparian landscapes are needed due to the importance of stream temperature to aquatic biota. We have tested three lidar predictors using two approaches developed for other applications of estimating solar insolation from airborne lidar using field data collected in a heavily forested narrow stream in western Oregon, USA. We show that a raster methodology based on the light penetration index (LPI) and a synthetic hemispherical photograph approach both accurately predict solar insolation, explaining more than 73% of the variability observed in pyranometers placed in the stream channel. We apply the LPI-based model to predict solar insolation for an entire riparian system and demonstrate that no field-based calibration is necessary to produce an unbiased prediction of solar insolation using airborne lidar alone.
机译:由于流温度对水生生物群的重要性,需要在河岸景观中量化太阳态度的方法。 我们使用了在美国西俄勒冈州西俄勒冈州的大型森林狭窄的狭窄流中收集的现场数据来测试三种激光器预测器的三种激光雷达预测因素。 我们表明,基于光渗透指数(LPI)和合成半球形照片方法的光栅方法都准确地预测太阳能呈现,解释了在置于流通道中的粘膜仪中观察到的超过73%的可变性。 我们应用基于LPI的模型来预测整个河岸系统的太阳能缺失,并证明不需要仅使用空气传播激光雷达产生对太阳能缺失的无偏的预测来产生基于场的校准。

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