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A New Clear-Sky Method for Assessing Photosynthetically Active Radiation at the Surface Level

机译:在表面水平评估光合有效辐射的新晴空方法

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A clear–sky method to estimate the photosynthetically active radiation (PAR) at the surface level in cloudless atmospheres is presented and validated. It uses a fast and accurate approximation adopted in several radiative transfer models, known as the k -distribution method and the correlated- k approximation, which gives a set of fluxes accumulated over 32 established wavelength intervals. A resampling technique, followed by a summation, are applied over the wavelength range [0.4, 0.7] μm in order to retrieve the PAR fluxes. The method uses as inputs the total column contents of ozone and water vapor, and optical properties of aerosols provided by the Copernicus Atmosphere Monitoring Service. To validate the method, its outcomes were compared to instantaneous global photosynthetic photon flux density (PPFD) measurements acquired at seven experimental sites of the Surface Radiation Budget Network (SURFRAD) located in various climates in the USA. The bias lies in the interval [?12, 61] μmol m ?2 s ?1 ([?1, 5] % in values relative to the means of the measurements at each station). The root mean square error ranges between 37 μmol m ?2 s ?1 (3%) and 82 μmol m ?2 s ?1 (6%). The squared correlation coefficient fluctuates from 0.97 to 0.99. This comparison demonstrates the high level of accuracy of the presented method, which offers an accurate estimate of PAR fluxes in cloudless atmospheres at high spatial and temporal resolutions useful for several bio geophysical models.
机译:提出并验证了一种在无云大气中估计天空表面光合有效辐射(PAR)的晴空方法。它使用了几种辐射传递模型中采用的快速准确的近似值,称为k分布方法和相关k近似值,它给出了在32个已建立的波长间隔上累积的一组通量。为了获得PAR通量,在波长范围[0.4,0.7]μm上应用了重采样技术,然后进行求和。该方法将臭氧和水蒸气的总柱含量以及哥白尼大气监测局提供的气溶胶的光学特性用作输入。为了验证该方法,将其结果与在美国不同气候的表面辐射预算网络(SURFRAD)的七个实验点获得的瞬时全球光合光子通量密度(PPFD)测量结果进行了比较。偏差位于间隔[?12,61]μmolm?2 s?1中(相对于每个站点的测量平均值为[?1,5]%)。均方根误差在37μmolm?2 s?1(3%)和82μmolm?2 s?1(6%)之间。相关平方的平方在0.97至0.99之间波动。该比较证明了所提出方法的高水平准确性,该方法可以在对几种生物地球物理模型有用的高空间和时间分辨率下,准确估算无云大气中的PAR通量。

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