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SCOPE 2.0: a model to simulate vegetated land surface fluxes and satellite signals

机译:范围2.0:模拟植被陆地磁通和卫星信号的模型

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The Soil Canopy Observation of Photosynthesis and Energy fluxes (SCOPE) model aims at linking satellite observations in the visible, infrared, and thermal domains with land surface processes in a physically based manner, and quantifying the microclimate in vegetation canopies. It simulates radiative transfer in the soil, leaves, and vegetation canopies, as well as photosynthesis and non-radiative heat dissipation through convection and mechanical turbulence. Since the first publication 12?years ago, SCOPE has been applied in remote sensing studies of solar-induced chlorophyll fluorescence (SIF), energy balance fluxes, gross primary production (GPP), and directional thermal signals. Here, we present a thoroughly revised version, SCOPE 2.0, which features a number of new elements: (1)?it enables the definition of layers consisting of leaves with different properties, thus enabling the simulation of vegetation with an understorey or with a vertical gradient in leaf chlorophyll concentration; (2)?it enables the simulation of soil reflectance; (3)?it includes the simulation of leaf and canopy reflectance changes induced by the xanthophyll cycle; and (4)?the computation speed has been reduced by 90?% compared to earlier versions due to a fundamental optimization of the model. These new features improve the capability of the model to represent complex canopies and to explore the response of remote sensing signals to vegetation physiology. The improvements in computational efficiency make it possible to use SCOPE 2.0 routinely for the simulation of satellite data and land surface fluxes. It also strengthens the operability for the numerical retrieval of land surface products from satellite or airborne data.
机译:光合作用和能量通量(范围)模型的土壤冠层观察旨在以物理上的方式将卫星观察与地面过程连接,并在植被檐篷中量化微气密。它通过对流和机械湍流模拟土壤,叶子和植被檐篷中的辐射转移,以及光合作用和非辐射散热。自第12次出版物12?几年前,范围已应用于太阳能诱导的叶绿素荧光(SIF),能量平衡通量,初级生产(GPP)和定向热信号的遥感研究。在这里,我们介绍了一个彻底修订的版本,范围2.0,它具有许多新元素:(1)?它能够定义由具有不同性质的叶子组成的层,从而使植被与虚拟物或垂直模拟叶片叶绿素浓度的梯度; (2)?它能够模拟土壤反射率; (3)?它包括叶绿素循环诱导的叶片和树冠反射变化的模拟; (4)?由于模型的基本优化,计算速度与早期版本相比减少了90?%。这些新功能提高了模型的能力,以代表复杂的檐篷,并探讨遥感信号对植被生理的响应。计算效率的改进使得可以使用范围2.0通常用于模拟卫星数据和陆地表面通量。它还加强了来自卫星或空气传播数据的土地表面产品数值检索的可操作性。

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