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Algorithm for retrieval of aerosol optical properties over the ocean from the Geostationary Ocean Color Imager

机译:从地球静止海洋彩色成像仪中检索海洋气溶胶光学特性的算法

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摘要

An aerosol retrieval algorithm for the first Geostationary Ocean Color Imager (GOCI) to be launched in March 2010 onboard the Communication, Ocean, and Meteorological Satellite (COMS) is presented. The algorithm retrieves aerosol optical depth (AOD), fine-mode fraction (FMF), and aerosol type in 500 m×500 m resolution. All the products are retrieved over clear water which is defined by surface reflectance ratio between 640 nm and 860 nm (SRR) less or equal to 2.5, while only AOD is retrieved over turbid water (SRRN2.5) due to high surface reflectance. To develop optimized algorithm for the target area of GOCI, optical properties of aerosol are analyzed from extensive observation of AERONET sunphotometers to generate lookup table. Surface reflectance of turbid water is determined from 30-day composite of Rayleighand gas corrected reflectance. By applying the present algorithm to MODIS top-of-the atmosphere reflectance, three different aerosol cases dominated by anthropogenic aerosol contains black carbon (BC), dust, and non-absorbing aerosol are analyzed to test the algorithm. The algorithm retrieves AOD, and size information together with aerosol type which are consistent with results inferred by RGB image in a qualitative way. The comparison of the retrieved AOD with those of MODIS collection 5 and AERONET sunphotometer observations shows reliable results. Especially, the application of turbid water algorithm significantly increases the accuracy in retrieving AOD at Anmyon station. The sensitivity study between MODIS and GOCI instruments in terms of relative sensitivity and scattering angle shows promising applicability of the present algorithm to future GOCI measurements.
机译:提出了将于2010年3月在通信,海洋和气象卫星(COMS)上发射的首个地球静止海洋彩色成像仪(GOCI)的气溶胶检索算法。该算法以500 m×500 m的分辨率检索气溶胶光学深度(AOD),精细模式分数(FMF)和气溶胶类型。所有产品均在清水上回收,该清水由640 nm至860 nm(SRR)小于或等于2.5的表面反射率所定义,而由于浊度高的表面反射率,只有AOD在混浊水(SRRN2.5)上回收。为了开发针对GOCI目标区域的优化算法,通过对AERONET日光计的广泛观察来分析气溶胶的光学特性,以生成查找表。混浊水的表面反射率由瑞利和气体校正的反射率的30天合成确定。通过将本算法应用于MODIS的大气顶反射率,分析了以人为气溶胶为主的三种不同的气溶胶案例,其中包含黑碳(BC),灰尘和非吸收性气溶胶,以测试该算法。该算法以定性的方式检索与RGB图像推断的结果一致的AOD和大小信息以及气溶胶类型。将检索到的AOD与MODIS collection 5和AERONET太阳光度计观察到的结果进行比较,显示了可靠的结果。特别是,浊水算法的应用显着提高了Anmyon站AOD检索的准确性。在MODIS和GOCI仪器之间的相对灵敏度和散射角度方面的灵敏度研究表明,本算法有望用于未来的GOCI测量。

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