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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Satellite and surface-based remote sensing of Saharan dust aerosols
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Satellite and surface-based remote sensing of Saharan dust aerosols

机译:卫星和基于地面的撒哈拉尘雾遥感

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摘要

The spatial and temporal characteristics of dust aerosols and their properties are assessed from satellite and ground-based sensors. The spatial distribution of total column aerosol optical depth at 550 nm (AOD) from the Moderate Resolution Imaging SpectroRadiometer (MODIS) coupled with top of atmosphere Clouds and the Earth's Radiant Energy System (CERES) shortwave fluxes are examined from the Terra satellite over the Atlantic Ocean. These data are then compared with AOD from two Aerosol Robotic Network (AERONET) ground-based sun photometer measurement sites for nearly six years (2000–2005). These two sites include Capo Verde (CV) (16°N, 24°W) near the Saharan dust source region and La Paguera (LP) (18°N, 67°W) that is downwind of the dust source regions. The AOD is two to three times higher during spring and summer months over CV when compared to LP and the surrounding regions. For a unit AOD value, the instantaneous TOA shortwave direct radiative effect (DRE) defined as the change in shortwave flux between clear and aerosol skies for CV and LP are 53 and 68 Wm2 respectively. DRE for LP is likely more negative due to fall out of larger particles during transport from CV to LP. However, separating the CERES-derived DRE by MODIS aerosol effective radii was difficult. Satellite and ground-based dust aerosol data sets continue to be useful to understand dust processes related to the surface and the atmosphere.
机译:灰尘气溶胶的时空特征及其特性可通过卫星和地面传感器进行评估。从大西洋中的Terra卫星对中分辨率成像光谱辐射仪(MODIS)结合顶部大气云和地球辐射能系统(CERES)短波通量得出的550 nm(AOD)的总柱气溶胶光学深度的空间分布进行了研究海洋。然后将这些数据与两个气溶胶机器人网络(AERONET)地面太阳光度计测量站点的AOD进行了近六年的比较(2000-2005年)。这两个站点包括位于撒哈拉尘埃源地区附近的佛得角(CV)(16°N,24°W)和位于尘埃源区顺风的拉帕格拉(LP)(18°N,67°W)。与LP和周围地区相比,春季和夏季的AOD比CV高2到3倍。对于单位AOD值,瞬时TOA短波直接辐射效应(DRE)定义为CV和LP的晴空和气溶胶天空之间的短波通量变化分别为53和68 Wm2。由于从CV到LP的运输过程中较大颗粒的掉落,LP的DRE可能更不利。但是,很难通过MODIS气溶胶有效半径分离CERES衍生的DRE。卫星和地面粉尘气溶胶数据集对于理解与地面和大气有关的粉尘过程仍然有用。

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