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Improvement of scattering correction for in situ coastal and inland water absorption measurement using exponential fitting approach
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作者 YE Huping LI Junsheng +6 位作者 ZHU Jianhua SHEN Qian LI Tongji ZHANG Fangfang YUE Huanyin ZHANG Bing LIAO Xiaohan 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2018年第4期1198-1215,共18页
The absorption coefficient of water is an important bio-optical parameter for water optics and water color remote sensing. However, scattering correction is essential to obtain accurate absorption coefficient values i... The absorption coefficient of water is an important bio-optical parameter for water optics and water color remote sensing. However, scattering correction is essential to obtain accurate absorption coefficient values in situ using the nine-wavelength absorption and attenuation meter AC9. Establishing the correction always fails in Case 2 water when the correction assumes zero absorption in the near-infrared(NIR) region and underestimates the absorption coefficient in the red region, which affect processes such as semi-analytical remote sensing inversion. In this study, the scattering contribution was evaluated by an exponential fitting approach using AC9 measurements at seven wavelengths(412, 440, 488, 510, 532, 555, and 715 nm) and by applying scattering correction. The correction was applied to representative in situ data of moderately turbid coastal water, highly turbid coastal water, eutrophic inland water, and turbid inland water. The results suggest that the absorption levels in the red and NIR regions are significantly higher than those obtained using standard scattering error correction procedures. Knowledge of the deviation between this method and the commonly used scattering correction methods will facilitate the evaluation of the effect on satellite remote sensing of water constituents and general optical research using different scatteringcorrection methods. 展开更多
关键词 absorption coefficient scattering correction ac9/acs exponential fitting method
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