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晴空条件下美国国家航空航天局海洋生物光学产品组中中分辨率成像光谱仪海洋表面光合有效辐射产品的评估。

Evaluation of the NASA OBPG MERIS ocean surface PAR product in clear sky conditions.

作者信息

Tan Jing, Frouin Robert, Jolivet Dominique, Compiègne Mathieu, Ramon Didier

出版信息

Opt Express. 2020 Oct 26;28(22):33157-33175. doi: 10.1364/OE.396066.

Abstract

The operational MEdium Resolution Imaging Spectrometer (MERIS) daily mean photosynthetically available radiation (PAR) product generated by the NASA Ocean Biology Processing Group (OBPG) was evaluated in clear sky conditions against in-situ measurements at various sites in the northwestern Mediterranean Sea (BOUSSOLE buoy), the northwestern Pacific (CCE-1 and -2 moorings), and the northeastern Atlantic (COVE platform). The measurements were first checked and corrected for calibration errors and uncertainties in data processing by comparing daily means for clear days (i.e., no clouds from sunrise to sunset and low aerosol abundance) with theoretical values from an accurate Monte Carlo radiative transfer code. The OBPG algorithm performed well when sky was completely cloudless during daytime, with a bias of 0.26 E/m/d (0.6%) and a RMS difference of 1.7 E/m/d (4.0%). Using satellite-derived aerosol optical thickness (AOT) and Angström coefficient instead of climatology slightly degraded the results, which was likely due to uncertainties in the aerosol retrievals. A sensitivity study to aerosol properties indicated that climatology may not work in some situations (e.g., episodic dust, pollution, or biomass burning events), suggesting that it is best to use actual aerosol estimates in clear sky conditions. The analysis also revealed that specifying aerosol properties, therefore atmospheric transmittance, from AOT and Angström coefficient, even retrieved from the satellite imagery, may not be sufficient in the presence of absorbing aerosols, especially when loadings are important. Performance was degraded when including situations of clear sky at the time of the MERIS observation but cloudy sky before and/or after overpass, resulting in a bias (overestimation) of 2.8 E/m/d (7.3%) and a RMS difference of 6.0 E/m/d (15.8%). The relatively large overestimation was due to the inability of the OBPG PAR algorithm to detect cloudiness at times other than the time of satellite overpass. The key to improving the daily mean PAR estimates in such situations does not reside so much in improving the radiative transfer treatment or specifying more accurately aerosol properties, but rather in accounting properly for the diurnal variability of cloudiness. To this end, a methodology that utilized Modern Era Retrospective Reanalysis for Research and Applications, Version 2 (MERRA-2) hourly cloud data (fractional coverage, optical thickness) was proposed and tested, reducing the bias to 1.6 E/m/d (4.2%). Improvement was not sufficient in some situations, due to the coarse resolution and uncertainties of the MERRA-2 products, which could not describe properly the cloud properties at the local scale (MERIS pixel). The treatment is applicable to any cloud situation and should be considered in a future version of the of OBPG PAR algorithm. This would require, however, refreshing the standard OBPG PAR products generated as part of the ocean-color processing line according to MERRA-2 data availability.

摘要

美国国家航空航天局海洋生物学处理组(OBPG)生成的中分辨率成像光谱仪(MERIS)每日光合有效辐射(PAR)产品,在晴空条件下针对地中海西北部(BOUSSOLE浮标)、西北太平洋(CCE - 1和 - 2系泊点)和东北大西洋(COVE平台)不同地点的现场测量值进行了评估。通过将晴天(即从日出到日落无云且气溶胶丰度低)的每日平均值与精确的蒙特卡罗辐射传输代码得出的理论值进行比较,首先对测量值进行了校准误差和数据处理不确定性的检查与校正。当白天天空完全无云时,OBPG算法表现良好,偏差为0.26 E/m/d(0.6%),均方根差为1.7 E/m/d(4.0%)。使用卫星反演的气溶胶光学厚度(AOT)和埃斯特朗系数替代气候学数据,结果略有下降,这可能是由于气溶胶反演存在不确定性。对气溶胶特性的敏感性研究表明,气候学数据在某些情况下(如偶发沙尘、污染或生物质燃烧事件)可能不适用,这表明在晴空条件下最好使用实际的气溶胶估算值。分析还表明,即使从卫星图像反演得到AOT和埃斯特朗系数来指定气溶胶特性(进而确定大气透过率),在存在吸收性气溶胶尤其是其含量较高时可能也不够。当MERIS观测时为晴空但过境前后为多云的情况被纳入时,性能下降,偏差(高估)为(2.8) E/m/d(7.3%),均方根差为6.0 E/m/d(15.8%)。相对较大的高估归因于OBPG PAR算法无法在卫星过境时间以外的其他时间检测到云量。在这种情况下,改进每日平均PAR估算的关键不在于改进辐射传输处理或更准确地指定气溶胶特性,而在于正确考虑云量的日变化。为此,提出并测试了一种利用现代气候学再分析资料研究与应用版本2(MERRA - 2)每小时云数据(云量覆盖率、光学厚度)的方法,将偏差降低到了(1.6) E/m/d(4.2%)。由于MERRA - 2产品分辨率粗糙且存在不确定性,在某些情况下改进并不充分,其无法恰当地描述局部尺度(MERIS像素)的云特性。该处理方法适用于任何云况,应在OBPG PAR算法的未来版本中予以考虑。然而,这需要根据MERRA - 2数据的可用性更新作为海洋颜色处理流程一部分生成的标准OBPG PAR产品。

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