首页> 外文会议>International Radiation Symposium, Jul 24-29, 2000, St. Petersberg, Russia >GROUND-BASED EXTINCTION MEASUREMENTS FOR THE EVALUATION, SPECTRAL BEHAVIOR AND COMPARATIVE ANALYSIS OF THE AEROSOL ε ANGSTROEM COEFFICIENT TO SeaWIFS APLICATIONS IN THE GULF OF CADIZ (SPAIN)
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GROUND-BASED EXTINCTION MEASUREMENTS FOR THE EVALUATION, SPECTRAL BEHAVIOR AND COMPARATIVE ANALYSIS OF THE AEROSOL ε ANGSTROEM COEFFICIENT TO SeaWIFS APLICATIONS IN THE GULF OF CADIZ (SPAIN)

机译:基于地基的消光测量,用于评估加的斯(西班牙)海面应用的气溶胶ε系数与气溶胶ε的对比分析

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Sea Color algorithms present great discrepancies in the estimations of pigment concentration in coastal zones (water case 2). As part of calibration/validation and atmospheric correction procedures of sea color applications, special algorithms need to be adapted for regional coastal zones, hence in situ aerosol measurements are required. An operational aerosol database from spectroradiometer measurements is being developed under Spanish project ESP97-1717-CO2-02 for ocean color satellite sensor application in the regional area of the Gulf of Cadiz (Spain). A total characterization of optical aerosol properties: aerosol optical depth (AOD), particle size distribution and radiative aerosol parameters, etc., is being carried out in order to develop and validate operational atmospheric correction algorithms. Auxiliary data as ozone measurements, pressure and wind speed are also available. Here we present a work applied to the SeaWIFS ocean color sensor atmospheric corrections in our area of study, based on ground aerosol measurements. Determination and spectral behavior of the Angstroem ε coefficient have been analyzed using the measured aerosol optical depth. The results show the general spectral features of this coefficient, which is the key parameter in the current worldwide SeaWIFS atmospheric correction algorithm. The variation of the ε (765/865) from the period 96-99 is analyzed here, together with those of the α turbidity Angstroem parameter. For specific and characteristic days of our database a detailed analysis of the spectral behavior of ε is also carried out. Correlations between the aerosol optical depth at the different SeaWIFS sensor bands were also established.
机译:“海洋颜色”算法在估算沿海地区的颜料浓度方面存在很大差异(水情况2)。作为海洋颜色应用程序的校准/验证和大气校正程序的一部分,需要针对区域沿海地区调整特殊的算法,因此需要进行原位气溶胶测量。正在西班牙项目ESP97-1717-CO2-02下开发由光谱仪测量得到的可操作气溶胶数据库,用于海洋彩色卫星传感器在加的斯湾(西班牙)区域的应用。为了开发和验证可操作的大气校正算法,正在对光学气溶胶特性进行总体表征:气溶胶光学深度(AOD),粒径分布和辐射气溶胶参数等。还提供了辅助数据,如臭氧测量值,压力和风速。在此,我们将根据地面气溶胶测量结果,将研究成果应用于我们研究领域中的SeaWIFS海洋色彩传感器的大气校正。 Angstroemε系数的测定和光谱行为已使用测得的气溶胶光学深度进行了分析。结果显示了该系数的一般频谱特征,它是当前全球SeaWIFS大气校正算法中的关键参数。这里分析了从96-99周期开始的ε(765/865)的变化,以及α浊度Angstroem参数的变化。对于我们数据库的特定特征日期,还对ε的光谱行为进行了详细分析。还建立了在不同SeaWIFS传感器波段的气溶胶光学深度之间的相关性。

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