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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Semianalytic Moderate-Resolution Imaging Spectrometer algorithms for chlorophyll a and absorption with bio-optical domains based on nitrate-depletion temperatures
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Semianalytic Moderate-Resolution Imaging Spectrometer algorithms for chlorophyll a and absorption with bio-optical domains based on nitrate-depletion temperatures

机译:基于硝酸盐消耗温度的半解析中等分辨率成像光谱仪算法用于叶绿素a和生物光学域的吸收

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This paper describes algorithms for retrieval of chlorophyll a concentration and phytoplankton and gelbstoff absorption coefficients for the Moderate-Resolution Imaging spectrometer (MODIS) or sensors with similar spectral channels. The algorithms are based on a semianalytical, bio-optical model of remote sensing reflectance, R_(rs)(##lambda). The R_(rs)(##lambda) model has two free variables. the absorption coefficient due to phytoplankton at 675 nm, a_(#phi#)(675), and the absorption coefficient due to gelbstoff at 400 nm, a_g(400). The R_(rs) model has several parameters that are fixed or can be specified based on the region and season of the MODIS scene. These control the spectral shapes of the optical constituents of the model. R_(rs)(##lambda_i) values from the MODIS data processing system are placed into the model, the model is inverted, and a_(#phi#)(675), a_g(400), and chlorophyll a are computed. The algorithm also derives the total absorption coefficients a_(##lambda_i) and the phytoplankton absorption coefficients a_(#phi#)(##lambda_i) at the visible MODIS wavelengths. MODIS algorithms are parameterized for three different bio-optical domains: (1) high photoprotective pigment to chlorophyll ratio and low self-shading, which for brevity, we designate as "unpackaged"; (2) low photoprotective pigment to chlorophyll ratio and high self-shading, which we designate as "packaged', and (3) a transitional or global-average type. These domains can be identified from space by comparing sea-surface temperature to nitrogen-depletion temperatures for each domain. Algorithm errors of more than 45% are reduced to errors of less than 30 precent with this approach, with the greatest effect occurring at the eastern and polar boundaries of the basins.
机译:本文描述了用于中分辨率成像光谱仪(MODIS)或具有类似光谱通道的传感器的叶绿素a浓度以及浮游植物和gelbstoff吸收系数的检索算法。该算法基于遥感反射率R_(rs)(## lambda)的半解析生物光学模型。 R_(rs)(## lambda)模型具有两个自由变量。浮游植物在675 nm处的吸收系数a _(#phi#)(675)和在400 nm处的gelbstoff引起的吸收系数a_g(400)。 R_(rs)模型具有几个固定的参数,或者可以根据MODIS场景的区域和季节指定这些参数。这些控制模型光学组件的光谱形状。将来自MODIS数据处理系统的R_(rs)(## lambda_i)值放入模型中,将模型反转,然后计算a _(#phi#)(675),a_g(400)和叶绿素a。该算法还得出可见MODIS波长处的总吸收系数a _(## lambda_i)和浮游植物吸收系数a _(#phi#)(## lambda_i)。 MODIS算法针对三个不同的生物光学领域进行了参数设置:(1)高保护性色素与叶绿素的比率和低自遮蔽性,为简便起见,我们将其指定为“未包装”; (2)我们称其为“包装”的是低光防护性颜料与叶绿素的比率,并且具有很高的自遮蔽性;(3)过渡型或全局平均型,这些域可以通过比较海面温度与氮素从空间中识别出来该方法的误差从45%以上降低到30%以下,最大的影响发生在盆地的东部和极地边界。

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