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Retrieval of the columnar aerosol phase function and single-scattering albedo from sky radiance over land: simulations

机译:从陆地上的天空辐射中提取柱状气溶胶相函数和单散射反照率:模拟

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We present a retrieval scheme that can be used to derive the aerosol phase function and single-scattering albedo from the sky radiance over land. The retrieval algorithm iteratively corrects the aerosol volume scattering function, the product of the single-scattering albedo and the phase function, based on the difference between the measured sky radiance and the radiance calculated by solving the radiative transfer equation. It is tested first under ideal conditions, i.e., the approximations made in the retrieval algorithm totally agree with actual conditions assumed in creating the pseudodata for sky radiance.It is then tested under more realistic conditions to assess its susceptibility to measurement errors and effects of conditions not recognized in the retrieval algorithm, e.g., surface horizontal inhomogeneity, departures of the surface from Lambertian, and aerosol horizontal inhomogeneity. These simulations show that, in most cases, this scheme can retrieve the aerosol single-scattering albedo with high accuracy (within 1%) and can therefore be used to identify strongly absorbing aerosols. It can also produce meaningful retrievals of most aerosol phase functions: less than 5% error at 865 nm and less than 10% at 443 nm in most cases. Typically, the error in the volume scattering function is small for scattering angles ≤90°, then increases for larger angles. Disappointing results in both the single-scattering albedo and the scattering phase function occur at 443 nm, either when there are large calibration errors in the radiometer used to measure the sky radiance or when the land reflection properties are significantly inhomogeneous. # 1998 Optical Society of America OCIS codes: 010.1110, 030.5620, 280.0280, 290.0290.
机译:我们提出了一种检索方案,该方案可用于从陆地上的天空辐射得出气溶胶相位函数和单散射反照率。该检索算法根据测量的天空辐射率与通过求解辐射传递方程计算出的辐射率之间的差,迭代地校正气溶胶体积散射函数,单散射反照率和相位函数的乘积。首先在理想条件下进行测试,即在检索算法中得出的近似值与创建天空辐射伪数据时假定的实际条件完全一致,然后在更实际的条件下进行测试以评估其对测量误差和条件影响的敏感性。在检索算法中无法识别,例如,表面水平不均匀,表面偏离朗伯,以及气溶胶水平不均匀。这些模拟表明,在大多数情况下,该方案可以以较高的准确度(在1%以内)检索气溶胶单散射反照率,因此可用于识别强吸收性气溶胶。它还可以对大多数气溶胶相功能进行有意义的检索:在大多数情况下,865 nm处的误差小于5%,而443 nm处的误差小于10%。通常,对于散射角≤90°,体积散射函数的误差较小,而对于较大的角度,则增大。当用于测量天空辐射的辐射计中存在较大的校准误差时,或者当地面反射特性明显不均匀时,单散射反照率和散射相位函数的结果都会令人失望。 #1998美国光学学会OCIS编码:010.1110、030.5620、280.0280、290.0290。

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