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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Estimating Particulate Inorganic Carbon Concentrations of the Global Ocean From Ocean Color Measurements Using a Reflectance Difference Approach
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Estimating Particulate Inorganic Carbon Concentrations of the Global Ocean From Ocean Color Measurements Using a Reflectance Difference Approach

机译:使用反射差异方法估算来自海洋颜色测量的全球海洋的微粒无机碳浓度

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摘要

A new algorithm for estimating particulate inorganic carbon (PIC) concentrations from ocean color measurements is presented. PIC plays an important role in the global carbon cycle through the oceanic carbonate pump, therefore accurate estimations of PIC concentrations from satellite remote sensing are crucial for observing changes on a global scale. An extensive global data set was created from field and satellite observations for investigating the relationship between PIC concentrations and differences in the remote sensing reflectance (R-rs) at green, red, and near-infrared (NIR) wavebands. Three color indices were defined: two as the relative height of R-rs(667) above a baseline running between R-rs(547) and an R-rs in the NIR (either 748 or 869 nm), and one as the difference between R-rs(547) and R-rs(667). All three color indices were found to explain over 90% of the variance in field-measured PIC. But, due to the lack of availability of R-rs(NIR) in the standard ocean color data products, most of the further analysis presented here was done using the color index determined from only two bands. The new two-band color index algorithm was found to retrieve PIC concentrations more accurately than the current standard algorithm used in generating global PIC data products. Application of the new algorithm to satellite imagery showed patterns on the global scale as revealed from field measurements. The new algorithm was more resistant to atmospheric correction errors and residual errors in sun glint corrections, as seen by a reduction in the speckling and patchiness in the satellite-derived PIC images.
机译:用于估计从海洋的颜色测量颗粒状无机碳(PIC)的浓度的新算法。 PIC起着通过海洋碳酸盐泵在全球碳循环中起重要作用,因此从卫星遥感PIC浓度的精确估计是用于观察在全球范围内的改变是至关重要的。广泛的全球数据集是从场和卫星观测创建用于调查在绿色,红色,和近红外(NIR)波段PIC浓度和遥感反射率(R-RS)的差异之间的关系。三个色指数被定义为:2为R-RS(547)之间延伸的基线以上R-RS(667)和R-Rs的在NIR(或者748或869纳米)的相对高度,和一个作为差R-RS(547)和R-RS(667)之间。发现所有三个颜色指数来解释方差的90%以上在现场测量PIC。但是,由于缺乏标准的海洋颜色数据产品R-RS(NIR)的可用性时,大多数的进一步分析这里介绍的是使用从只有两个频段确定的显色指数完成。新的双波段色指数算法被发现比在生成全球PIC数据产品使用的当前标准算法更精确地检索PIC浓度。表明在全球范围模式的新算法,以卫星图像的应用从实地测量发现。新算法是大气校正错误,并在太阳闪烁校正残留误差更耐,通过在斑点的减少和斑块在卫星衍生PIC图像作为可见。

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