首页> 外文会议>2011 IEEE International Geoscience Remote Sensing Symposium >Estimating spatial distribution of radiation below the Qinghai Spruce forest canopy in Qilian Mountains using hemispherical images and Airborne LiDAR data
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Estimating spatial distribution of radiation below the Qinghai Spruce forest canopy in Qilian Mountains using hemispherical images and Airborne LiDAR data

机译:利用半球图像和机载LiDAR数据估算祁连山青海云杉林冠层下方辐射的空间分布

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Solar radiation transmission plays is an important process in the energy exchange in forest ecosystem. There are a lot of transmission models developed for a single canopy, but relatively fewer models for studying spatial distribution of radiation below the forest canopy. In this paper, we used a simple model that was related to canopy cover to calculate the solar radiation below the forest canopy. At the same time, the hemispherical photography integrated with airborne LiDAR to provide a data for the model. Especially, LiDAR data was used to obtain the spatial distribution of the canopy cover. We obtained a spatial distribution of solar radiation below the Qinghai Spruce forest canopy in Qilian Mountains. Results showed that modeled average daily total radiation below the canopy was 21.614 MJ/m2/d, ranging from 4.618 to 54.053 MJ/m2/d in our experimental zone.
机译:太阳辐射的传播过程是森林生态系统能量交换的重要过程。为单个树冠开发了许多传输模型,但是用于研究森林冠层以下辐射的空间分布的模型相对较少。在本文中,我们使用了一个与冠层覆盖有关的简单模型来计算森林冠层以下的太阳辐射。同时,将半球摄影技术与机载LiDAR集成在一起,可为模型提供数据。尤其是,LiDAR数据被用于获得冠层覆盖的空间分布。我们在祁连山的青海云杉林冠层之下获得了太阳辐射的空间分布。结果表明,在我们的实验区中,冠层下的模拟平均日总辐射量为21.614 MJ / m 2 / d,范围从4.618到54.053 MJ / m 2 / d。

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