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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Retrieval of aerosol properties over the ocean from multispectral single-viewing-angle measurements of intensity and polarization: Retrieval approach, information content, and sensitivity study
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Retrieval of aerosol properties over the ocean from multispectral single-viewing-angle measurements of intensity and polarization: Retrieval approach, information content, and sensitivity study

机译:从强度和极化的多光谱单视角测量中检索海洋气溶胶特性:检索方法,信息内容和敏感性研究

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We present a novel approach to the retrieval of aerosol properties from multiple-wavelength single-viewing-angle measurements of intensity as well as polarization. Instead of assuming a number of standard aerosol models, the presented method aims to retrieve microphysical aerosol properties corresponding to a bimodal aerosol size distribution. Additionally, the oceanic pigment concentration and information on aerosol height are retrieved from the measurement. The retrieval approach is based on a linearized vector radiative transfer model in combination with the Phillips-Tikhonov regularization method. Aerosol retrievals are performed on synthetic GOME-2 measurements of intensity and polarization. Here, the information content of retrievals using intensity as well as polarization measurements is investigated and compared with retrievals using only intensity measurements. It is found that for retrievals that include polarization measurements the degrees of freedom for signal (DFS) is in the range 6–8. Here, the aerosol loading of both modes, the effective radius of at least one mode, the real and imaginary part of the refractive index, the height of the layer where the bulk of the aerosols is located, and the oceanic pigment concentration can be retrieved from the measurement. For some aerosol types also, information on the effective variance can be retrieved. If only intensity measurements are used, the DFS is in the range 3.5–5 and no significant information on aerosol imaginary refractive index, effective variance, and aerosol height can be retrieved. For most viewing geometries, the expected uncertainty on the aerosol optical thickness at 550 nm is in the range 3–5% if intensity and polarization measurements are used and is a factor 2–30 higher if only intensity measurements are used. The absolute uncertainty on the single scattering albedo at 350 nm is about 0.015 for retrievals including polarization and 0.025–0.2 for retrievals using only intensity measurements. Additionally, the effect of systematic errors has been investigated. The effect of a 1% calibration error is below 10% on the optical thickness at 550 nm but can be as large as 0.06 (absolute error) on the single scattering albedo, depending on the spectral signature and aerosol type.
机译:我们提出了一种从强度和极化的多波长单视角测量中检索气溶胶特性的新颖方法。代替假设许多标准气溶胶模型,提出的方法旨在检索与双峰气溶胶尺寸分布相对应的微物理气溶胶特性。此外,还可以从测量中获取海洋色素浓度和气溶胶高度信息。检索方法是基于线性向量辐射传递模型并结合Phillips-Tikhonov正则化方法。对强度和极化强度的合成GOME-2测量进行气溶胶回收。在此,研究了使用强度以及极化测量值进行检索的信息内容,并将其与仅使用强度测量值进行检索的结果进行了比较。发现对于包括极化测量的检索,信号的自由度(DFS)在6-8范围内。在这里,两种模式的气溶胶负载,至少一种模式的有效半径,折射率的实部和虚部,大部分气溶胶所在的层的高度以及海洋色素的浓度都可以获取。从测量。对于某些气溶胶类型,也可以获取有关有效方差的信息。如果仅使用强度测量,则DFS在3.5-5范围内,并且无法获取有关气溶胶虚折射率,有效方差和气溶胶高度的重要信息。对于大多数观察几何形状,如果使用强度和偏振测量,则在550 nm处气溶胶光学厚度的预期不确定度在3-5%的范围内,而如果仅使用强度测量,则不确定度要高2-30倍。对于仅包含强度测量值的反演,在350 nm处单个散射反照率的绝对不确定度约为0.015,对于反演而言,其绝对不确定度约为0.025–0.2。此外,已经研究了系统错误的影响。 1%校准误差对550 nm光学厚度的影响低于10%,但对单个散射反照率的影响可能高达0.06(绝对误差),具体取决于光谱特征和气溶胶类型。

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