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首页> 外文期刊>Ocean science >Spectral studies of ocean water with space-borne sensor SCIAMACHY using Differential Optical Absorption Spectroscopy (DOAS)
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Spectral studies of ocean water with space-borne sensor SCIAMACHY using Differential Optical Absorption Spectroscopy (DOAS)

机译:利用星载传感器SCIAMACHY使用差分光学吸收光谱法(DOAS)对海水进行光谱研究

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Methods enabling the retrieval of oceanic parameter from the space borne instrumentation Scanning Imaging Absorption Spectrometer for Atmospheric ChartographY (SCIAMACHY) using Differential Optical Absorption Spectroscopy (DOAS) are presented. SCIAMACHY onboard ENVISAT measures back scattered solar radiation at a spectral resolution (0.2 to 1.5 nm). The DOAS method was used for the first time to fit modelled Vibrational Raman Scattering (VRS) in liquid water and in situ measured phytoplankton absorption reference spectra to optical depths measured by SCIAMACHY. Spectral structures of VRS and phytoplankton absorption were clearly found in these optical depths. Both fitting approaches lead to consistent results. DOAS fits correlate with estimates of chlorophyll concentrations: low fit factors for VRS retrievals correspond to large chlorophyll concentrations and vice versa; large fit factors for phytoplankton absorption correspond with high chlorophyll concentrations and vice versa. From these results a simple retrieval technique taking advantage of both measurements is shown. First maps of global chlorophyll concentrations were compared to the corresponding MODIS measurements with very promising results. In addition, results from this study will be used to improve atmospheric trace gas DOAS-retrievals from visible wavelengths by including these oceanographic signatures.
机译:提出了利用差动光吸收光谱法(DOAS)从星载大气扫描仪成像成像吸收光谱仪(SCIAMACHY)中检索海洋参数的方法。 ENVISAT上的SCIAMACHY可以测量光谱分辨率(0.2至1.5 nm)的反向散射太阳辐射。首次使用DOAS方法将模型化的液体在水中的振动拉曼散射(VRS)和原位测量的浮游植物吸收参考光谱拟合到由SCIAMACHY测量的光学深度。在这些光学深度中清楚地发现了VRS的光谱结构和浮游植物的吸收。两种拟合方法均会产生一致的结果。 DOAS拟合与叶绿素浓度的估计值相关:VRS检索的低拟合系数对应于较大的叶绿素浓度,反之亦然;浮游植物吸收的大拟合因子对应于高的叶绿素浓度,反之亦然。从这些结果可以看出,利用了两种测量方法的简单检索技术。将全球叶绿素浓度的第一张图与相应的MODIS测量值进行了比较,结果非常令人满意。此外,这项研究的结果将被用于通过包括这些海洋学特征来改善从可见光波长进行的大气痕量气体DOAS回收。

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