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Estimation of Aerosol altitude from reflectance ratio measurements in the O2 A-band

机译:从O2 A频段测量的反射率比测量估计气溶胶高度

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A methodology is presented to estimate aerosol altitude from reflectance ratio measurements in the O2 absorption A-band. Previous studies have shown the impact of the vertical distribution of scatterers on the reflectance ratio. The reflectance ratio is defined as the ratio of the reflectance in a first spectral band, strongly attenuated by O2 absorption, to the reflectance in a second spectral band, minimally attenuated. First, a sensitivity study is performed to quantify the expected accuracy for various aerosol loadings and models. An accurate, high spectral resolution, radiative transfer model that fully accounts for interactions between scattering and absorption is used in the simulations. Due to their adequate spectral characteristics, POLDER and MERIS instruments are considered for simulations. For a moderately loaded atmosphere (i.e., aerosol optical thickness of 0.3 at 760 nm), the expected error on aerosol altitude is about 0.3 km for MERIS and 0.7 km for POLDER. More accurate estimates are obtained with MERIS, since the spectral reflectance ratio is more sensitive. Second, the methodology is applied to MERIS and POLDER imagery. Estimates of aerosol altitude are compared with lidar profiles of backscattering coefficient acquired during the AOPEX-2004 experiment. Retrievals are consistent with measurements and theory. These comparisons demonstrate the potential of the differential absorption methodology for obtaining information on aerosol vertical distribution.
机译:提出了一种方法来从O2吸收A-带中的反射率比测量来估计气溶胶高度。以前的研究表明散射体垂直分布对反射比的影响。反射率比定义为第一光谱带中的反射率与o2吸收的反射率的比率,在第二光谱带中的反射率下,最小衰减。首先,进行敏感性研究以量化各种气溶胶载荷和模型的预期精度。准确,高光谱分辨率,充分考虑散射和吸收之间的相互作用的辐射转移模型。由于其适当的光谱特性,考虑了圩区和Meris仪器进行仿真。对于一个适度装载的大气(即,760nm的气溶胶光学厚度为0.3),Meris的气溶胶高度的预期误差约为0.3公里,为圩区为0.7公里。利用MERIS获得更准确的估计,因为光谱反射率比更敏感。其次,该方法应用于Meris和Bolder Imagerery。将气溶胶高度的估计与Aopex-2004实验期间获得的后散射系数的激光雷达曲线进行了比较。检索与测量和理论一致。这些比较证明了用于获得气溶胶垂直分布信息的微分吸收方法的潜力。

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