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Partitioning in situ total spectral absorption by use of moored spectral absorption-attenuation meters

机译:使用系泊光谱吸收衰减仪对总光谱吸收进行分区

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摘要

High-temporal-resolution spectral absorption data were acquired by use of one bottom-mounted (~68-m) and three moored spectral absorption and attenuation meters (ac-9 meters at 14, 37, and 52 m) on the Middle Atlantic Bight continental shelf during the fall 1996 period of the Coastal Mixing and Optics experiment. We employed a previously published spectral absorption model with the data to partition total absorption into absorption by water, phytoplankton, detritus, and gelbstoff (dissolved matter). We validated the model by comparing its results against coincident in vivo absorption coefficients derived from discrete bottle samples. Correlations between modeled and in vivo spectra range from 0.873 to 0.998. We optimized these correlations to determine the model parameters. These parameters could not be determined solely from the moored ac-9 results. Therefore a separate set of absorption measurements (from discrete bottle samples) was necessary to permit values for the model parameters to be determined. Model results allow us to separate particulate and dissolved components of absorption and to examine the temporal variability and the vertical distributions and concentrations of each component, given the total absorption in the water column.
机译:通过使用一台底部安装的(〜68-m)和三台系泊的光谱吸收和衰减仪(在14、37和52 m处的ac-9米)获得了高分辨率的光谱吸收数据(在14、37和52 m处为ac-9米) 1996年秋季沿海混合与光学实验的大陆架。我们采用了以前发布的光谱吸收模型,将数据的总吸收分为水,浮游植物,碎屑和gelbstoff(溶解物质)的吸收。我们通过将其结果与离散瓶样品的体内吸收系数相比较来验证该模型。建模光谱与体内光谱之间的相关性介于0.873至0.998之间。我们优化了这些相关性以确定模型参数。不能仅从停泊的ac-9结果确定这些参数。因此,必须有一套单独的吸收测量值(来自不连续的瓶子样品),才能确定模型参数的值。模型结果使我们能够分离吸收的颗粒成分和溶解成分,并根据给定水柱中的总吸收量,检查时间变异性以及每种成分的垂直分布和浓度。

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