...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >AERONET-Based Nonspherical Dust Optical Models and Effects on the VIIRS Deep Blue/SOAR Over Water Aerosol Product
【24h】

AERONET-Based Nonspherical Dust Optical Models and Effects on the VIIRS Deep Blue/SOAR Over Water Aerosol Product

机译:基于Aeroonet的非球形粉尘光学型号和viirs深蓝色/翱翔的效果水溶机油产品

获取原文
获取原文并翻译 | 示例
           

摘要

Aerosol Robotic Network (AERONET)-based nonspherical dust optical models are developed and applied to the Satellite Ocean Aerosol Retrieval (SOAR) algorithm as part of the Version 1 Visible Infrared Imaging Radiometer Suite (VIIRS) NASA “Deep Blue” aerosol data product suite. The optical models are created using Version 2 AERONET inversion data at six distinct sites influenced frequently by dust aerosols from different source regions. The same spheroid shape distribution as used in the AERONET inversion algorithm is assumed to account for the nonspherical characteristics of mineral dust, which ensures the consistency between the bulk scattering properties of the developed optical models and the AERONET-retrieved microphysical and optical properties. For the Version 1 SOAR aerosol product, the dust optical model representative for Capo Verde site is used, considering the strong influence of Saharan dust over the global ocean in terms of amount and spatial coverage. Comparisons of the VIIRS-retrieved aerosol optical properties against AERONET direct-Sun observations at five island/coastal sites suggest that the use of nonspherical dust optical models significantly improves the retrievals of aerosol optical depth (AOD) and ?ngstr?m exponent by mitigating the well-known artifact of scattering angle dependence of the variables, which is observed when incorrectly assuming spherical dust. The resulting removal of these artifacts results in a more natural spatial pattern of AOD along the transport path of Saharan dust to the Atlantic Ocean; that is, AOD decreases with increasing distance transported, whereas the spherical assumption leads to a strong wave pattern due to the spurious scattering angle dependence of AOD.
机译:基于Aerosol机器人网络(AERONET)的非球形粉尘光学型号被开发并应用于卫星海洋气溶胶检索(SOAR)算法,作为版本1可见红外成像辐射计套件(VIIRS)NASA“深蓝色”气溶胶数据产品套房。使用来自不同源区的尘埃气溶胶的六个不同部位的六个不同部位的版本2的AeroNet反演数据创建光学模型。假设在机动仪反转算法中使用的相同的球形形状分布解释了矿物粉尘的非球形特性,其确保了所发育光学模型的大量散射特性与机动喷离的微妙和光学性质之间的一致性。对于版本1 SOAR气溶胶产品,使用CAPO VERDE部位的灰尘光学模型代表,考虑到撒哈拉尘埃在全球海洋中的浓度和空间覆盖范围。在五个岛/沿海网站上对AeroNet直接阳光观测的Viirs检测到的气溶胶光学性能的比较表明,使用非球形粉尘光学模型的使用显着改善了气溶胶光学深度(AOD)的检索和ΔM指导当不正确地假设球形灰尘时观察到变量的散射角度依赖性的众所周知的伪影。由此产生的这些工件的去除导致沿撒哈拉尘埃的运输路径更自然的AOD空间图案到大西洋;也就是说,AOD随着传输的距离增加而减小,而球形假设由于AOD的杂散散射角度依赖性而导致强波图案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号