首页> 外文会议>Remote Sensing of the Ocean, Sea Ice, and Large Water Regions 2007; Proceedings of SPIE-The International Society for Optical Engineering; vol.6743 >Impact of scattering and absorption of photosynthetic pigments on fluorescence retrieval algorithms for coastal waters
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Impact of scattering and absorption of photosynthetic pigments on fluorescence retrieval algorithms for coastal waters

机译:光合色素的散射和吸收对沿海水域荧光检索算法的影响

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Fluorescence Line Height (FLH) algorithms are effective for fluorescence retrieval in the open ocean where elastic reflectance in the fluorescence zone does not deviate much from the baseline, In coastal waters, FLH algorithms are significantly complicated by the overlap of the fluorescence and elastic reflectance peaks. To test accuracy of MODIS, MERIS and other FLH algorithms, we compared numerical simulations using an extensive synthetic database suitable for case II waters, with results of extensive field measurements of reflectance, absorption and attenuation spectra by us in the Chesapeake Bay, as well as satellite FLH data from several areas that typically show low correlation between [Chl] and FLH. Our synthetic datasets were created using the HYDROLIGHT radiative transfer code with IOP's connected to parameterized microphysical models in accordance with procedures used to generate the IOCCG dataset, but with some added improvements. These included higher (1 nm) spectral resolution, a wider range of parameters typical for coastal waters, including chlorophyll specific absorptions with significant variations in spectral shapes and magnitude. HYDROLIGHT simulations of elastic reflectance using measured attenuation/extinction spectra followed by subtraction from measured reflectance, permitted retrieval of the fluorescence contribution to the latter, for comparisons with the data set simulations. We find relatively small fluorescence contributions to surface reflectance for mineral concentrations > 5 mg/l because of strong attenuation in the excitation zone and enhanced elastic reflectance making fluorescence detection unrealistic. For lower mineral concentrations, we find that some combinations of NIR observation bands permit reasonably good FLH retrievals in conditions where specific absorption spectral variation is not very high, and that application of multi-spectral algorithms can be more efficient for the retrieval of fluorescence contributions in coastal areas.
机译:荧光线高度(FLH)算法对于在海洋中荧光区域的弹性反射率与基线没有太大偏离的公海中的荧光检索非常有效。在沿海水域,由于荧光和弹性反射率峰的重叠,FLH算法变得非常复杂。为了测试MODIS,MERIS和其他FLH算法的准确性,我们比较了使用适合案例II水域的广泛合成数据库进行的数值模拟,以及我们在切萨皮克湾以及反射场,吸收谱和衰减谱的大量现场测量结果,以及来自几个地区的卫星FLH数据通常显示[Chl]与FLH之间的相关性较低。我们使用HYDROLIGHT辐射转移码创建了我们的合成数据集,并根据生成IOCCG数据集的过程将IOP连接到参数化的微物理模型,但还进行了一些改进。这些包括更高的(1 nm)光谱分辨率,更广泛的沿海水域典型参数,包括叶绿素比吸收值,其光谱形状和幅度有明显变化。使用测得的衰减/消光光谱对HYDROLIGHT进行弹性反射率模拟,然后从测得的反射率中减去,可以检索到对反射率的荧光贡献,以便与数据集模拟进行比较。我们发现,当矿物质浓度> 5 mg / l时,荧光对表面反射的贡献相对较小,这是因为激发区的强烈衰减和增强的弹性反射使荧光检测不切实际。对于较低的矿物质浓度,我们发现,在特定吸收光谱变化不是很高的情况下,一些NIR观察带组合可以使FLH检索相当好,并且多光谱算法的应用可以更有效地检索荧光贡献。沿海地区。

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