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Coral reef benthic productivity based on optical absorptance and light-use efficiency

机译:基于光吸收率和光利用效率的珊瑚礁底栖生产力

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In the interest of determining productivity across a range of spatial scales (meters to many kilometers) and in different reef environments, this paper proposes a technique for measuring productivity based on remote sensing of optical absorptance and light-use efficiency. The concept is straightforward: gross primary production equals plant-incident irradiance multiplied by plant absorptance multiplied by the plant’s light-use efficiency (GPP = E d Aε). Both E d and A are derivable from various remote sensing data sources, thus the approach is feasible. This paper presents a demonstration of the application for Kaneohe Bay, Oahu, HI based on Quickbird satellite imagery and SHOALS LIDAR data. E d is modeled at every point in the image, and the image itself is inverted to provide A. Organismal-scale ε reported in the literature is taken as a surrogate for community-scale ε. The resulting GPP image compares well with the range of GPP values for reef-flats in general, as well as the distribution and range of GPP for Kaneohe Bay in particular. Though results likely can be improved by using spectral imagery and more accurate values for ε, this concept study demonstrates the tractability of this approach for measuring coral reef GPP.
机译:为了确定各种空间尺度(米到几公里)和不同礁石环境下的生产力,本文提出了一种基于遥感的光吸收率和光利用效率来测量生产力的技术。这个概念很简单:初级生产总值等于植物入射辐照度乘以植物吸收率乘以植物的光利用效率(GPP = E d Aε)。 E d 和A都可以从各种遥感数据源导出,因此该方法是可行的。本文基于Quickbird卫星图像和SHOALS LIDAR数据,演示了在夏威夷瓦胡岛卡尼奥赫湾的应用。在图像的每个点都对E d 进行建模,然后将图像本身反转以提供A。文献中报道的生物尺度ε被视为群落尺度ε的替代。所得的GPP图像与通常用于礁滩的GPP值范围以及特别是针对Kaneohe湾的GPP分布和范围相比较良好。尽管可以通过使用光谱图像和更准确的ε值来改善结果,但此概念研究证明了此方法可用于测量珊瑚礁GPP。

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