首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >SIMULATION OF CHLOROPHYLL FLUORESCENCE FOR SUN- AND SHADE-ADAPTED LEAVES OF 3D CANOPIES WITH THE DART MODEL
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SIMULATION OF CHLOROPHYLL FLUORESCENCE FOR SUN- AND SHADE-ADAPTED LEAVES OF 3D CANOPIES WITH THE DART MODEL

机译:用飞镖模型模拟叶绿素荧光的叶绿素荧光,三维檐型叶片

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Potential of solar-induced chlorophyll fluorescence (SIF) to track time variable environmental stress of vegetation explains high interest in SIF remote sensing. There is an increasing need for physical models that consider the 3D structure of Earth surfaces, in order to better understand the relationships between SIF, vegetation three-dimensional (3D) architecture, irradiance and remote sensing configuration at canopy level. The Discrete Anisotropic Radiative Transfer (DART) model is one of the most comprehensive physically based 3D models of Earth-atmosphere radiative transfer (RT), covering the spectral domain from ultraviolet to thermal infrared wavelengths. This paper presents the determination of the sun and shade adapted leaf elements of a 3D vegetation canopy in DART, which is required for accurate RT simulations of SIF in geometrically explicit 3D canopy representations.
机译:太阳能诱导的叶绿素荧光(SIF)追踪植被的时间变量环境应力解释了对SIF遥感的高兴趣。越来越需要考虑地面表面的3D结构的物理模型,以便更好地了解概述SIF,植被立体(3D)架构,辐照度和遥感配置在冠层水平。离散各向异性辐射转移(DART)模型是最全面的物理基础的3D型号的大气辐射转移(RT)之一,覆盖从紫外线到热红外波长的光谱域。本文介绍了DART中3D植被冠层的太阳和阴影适应性叶子元素,这是在几何显式3D冠层表示中精确的RT模拟SIF的RT模拟所必需的。

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