Vasilkov Alexander P, Herman Jay R, Ahmad Ziauddin, Kahru Mati, Mitchell B Greg
Science Systems and Applications, Inc., 10210 Greenbelt Road, Lanham, Maryland 20706, USA.
Appl Opt. 2005 May 10;44(14):2863-9. doi: 10.1364/ao.44.002863.
Quantitative assessment of the UV effects on aquatic ecosystems requires an estimate of the in-water radiation field. Actual ocean UV reflectances are needed for improving the total ozone retrievals from the total ozone mapping spectrometer (TOMS) and the ozone monitoring instrument (OMI) flown on NASA's Aura satellite. The estimate of underwater UV radiation can be done on the basis of measurements from the TOMS/OMI and full models of radiative transfer (RT) in the atmosphere-ocean system. The Hydrolight code, modified for extension to the UV, is used for the generation of look-up tables for in-water irradiances. A look-up table for surface radiances generated with a full RT code is input for the Hydrolight simulations. A model of seawater inherent optical properties (IOPs) is an extension of the Case 1 water model to the UV. A new element of the IOP model is parameterization of particulate matter absorption based on recent in situ data. A chlorophyll product from ocean color sensors is input for the IOP model. Verification of the in-water computational scheme shows that the calculated diffuse attenuation coefficient Kd is in good agreement with the measured Kd.
对紫外线对水生生态系统的影响进行定量评估需要估算水中辐射场。为了改进从搭载在美国国家航空航天局(NASA)的Aura卫星上的总臭氧测绘光谱仪(TOMS)和臭氧监测仪(OMI)获取的总臭氧反演结果,需要实际的海洋紫外线反射率。水下紫外线辐射的估算可以基于TOMS/OMI的测量数据以及大气 - 海洋系统中辐射传输(RT)的完整模型来进行。为扩展到紫外线波段而修改的Hydrolight代码用于生成水中辐照度的查找表。使用完整RT代码生成的表面辐射率查找表被输入到Hydrolight模拟中。海水固有光学特性(IOPs)模型是将一类水体模型扩展到紫外线波段。IOP模型的一个新元素是基于近期现场数据对颗粒物吸收进行参数化。来自海洋颜色传感器的叶绿素产品被输入到IOP模型中。对水中计算方案的验证表明,计算得到的漫衰减系数Kd与测量得到的Kd吻合良好。